COMMISSION REGULATION (EU) 2017/2400
of 12 December 2017
implementing Regulation (EC) No 595/2009 of the European Parliament and of the Council as regards the determination of the CO
2
emissions and fuel consumption of heavy-duty vehicles and amending Directive 2007/46/EC of the European Parliament and of the Council and Commission Regulation (EU) No 582/2011
(Text with EEA relevance)
CHAPTER 1
GENERAL PROVISIONS
Article 1
Subject matter
Article 2
Scope
Article 3
Definitions
Article 4
Vehicle groups
Article 5
Electronic tools
CHAPTER 2
LICENCE TO OPERATE THE SIMULATION TOOL FOR THE PURPOSES OF TYPE-APPROVAL WITH REGARD TO EMISSIONS AND VEHICLE REPAIR AND MAINTENANCE INFORMATION
Article 6
Application for a licence to operate the simulation tool with a view to determining CO
2
emissions and fuel consumption of new vehicles
Article 7
Administrative provisions for the granting of the licence
Article 8
Subsequent changes to the processes set up for the purposes of determining CO
2
emissions and fuel consumption of vehicles
CHAPTER 3
OPERATION OF THE SIMULATION TOOL WITH A VIEW TO DETERMINING THE CO
2
EMISSIONS AND FUEL CONSUMPTION FOR THE PURPOSES OF REGISTRATION, SALE AND ENTRY INTO SERVICE OF NEW VEHICLES
Article 9
Obligation to determine and declare CO
2
emissions and fuel consumption of new vehicles
Article 10
Modifications, updates and malfunction of the electronic tools
Article 11
Accessibility of the simulation tool inputs and output information
CHAPTER 4
CO
2
EMISSIONS AND FUEL CONSUMPTION RELATED PROPERTIES OF COMPONENTS, SEPARATE TECHNICAL UNITS AND SYSTEMS
Article 12
Components, separate technical units and systems relevant for the purposes of determining CO
2
emissions and fuel consumption
Article 13
Standard values
Article 14
Certified values
Article 15
Family concept regarding components, separate technical units and systems using certified values
Article 16
Application for a certification of the CO
2
emissions and fuel consumption related properties of components, separate technical units or systems
Article 17
Administrative provisions for the certification of CO
2
emissions and fuel consumption related properties of components, separate technical units and systems
Article 18
Extension to include a new component, separate technical unit or system into a component family, separate technical unit family or system family
Article 19
Subsequent changes relevant for the certification of CO
2
emissions and fuel consumption related properties of components, separate technical units and systems
CHAPTER 5
CONFORMITY OF SIMULATION TOOL OPERATION, INPUT INFORMATION AND INPUT DATA
Article 20
Responsibilities of the vehicle manufacturer and the approval authority with regard to the conformity of simulation tool operation
Article 21
Remedial measures for the conformity of simulation tool operation
Article 22
Responsibilities of the manufacturer and approval authority with regards to conformity of CO
2
emissions and fuel consumption related properties of components, separate technical units and systems
Article 23
Remedial measures for the conformity of CO
2
emissions and fuel consumption related properties of components, separate technical units and systems
CHAPTER 6
FINAL PROVISIONS
Article 24
Transitional provisions
Article 25
Amendment to Directive 2007/46/EC
Article 26
Amendment to Regulation (EU) No 582/2011
Article 27
Entry into force
ANNEX I
CLASSIFICATION OF VEHICLES IN VEHICLE GROUPS
1. Classification of the vehicles for the purpose of this Regulation
1.1 Classification of vehicles of category N
Description of elements relevant to the classification in vehicle groups |
Vehicle group |
Allocation of mission profile and vehicle configuration |
Standard body allocation |
||||||||||
Axle configuration |
Chassis configuration |
Technically permissible maximum laden mass (tons) |
Long haul |
Long haul (EMS) |
Regional delivery |
Regional delivery (EMS) |
Urban delivery |
Municipal utility |
Construction |
||||
4 × 2 |
Rigid |
> 3,5 – < 7,5 |
(0) |
|
|||||||||
Rigid (or tractor) (**) |
7,5 – 10 |
1 |
|
|
R |
|
R |
|
|
B1 |
|||
Rigid (or tractor) (**) |
> 10 – 12 |
2 |
R + T1 |
|
R |
|
R |
|
|
B2 |
|||
Rigid (or tractor) (**) |
> 12 – 16 |
3 |
|
|
R |
|
R |
|
|
B3 |
|||
Rigid |
> 16 |
4 |
R + T2 |
|
R |
|
|
R |
|
B4 |
|||
Tractor |
> 16 |
5 |
T + ST |
T + ST + T2 |
T + ST |
T + ST + T2 |
|
|
|
|
|||
4 × 4 |
Rigid |
7,5 – 16 |
(6) |
|
|||||||||
Rigid |
> 16 |
(7) |
|
||||||||||
Tractor |
> 16 |
(8) |
|
||||||||||
6 × 2 |
Rigid |
all weights |
9 |
R + T2 |
R + D + ST |
R |
R + D + ST |
|
R |
|
B5 |
||
Tractor |
all weights |
10 |
T + ST |
T + ST + T2 |
T + ST |
T + ST + T2 |
|
|
|
|
|||
6 × 4 |
Rigid |
all weights |
11 |
R + T2 |
R + D + ST |
R |
R + D + ST |
|
R |
R |
B5 |
||
Tractor |
all weights |
12 |
T + ST |
T + ST + T2 |
T + ST |
T + ST + T2 |
|
|
R |
|
|||
6 × 6 |
Rigid |
all weights |
(13) |
|
|||||||||
Tractor |
all weights |
(14) |
|
||||||||||
8 × 2 |
Rigid |
all weights |
(15) |
|
|||||||||
8 × 4 |
Rigid |
all weights |
16 |
|
|
|
|
|
|
R |
(generic weight + CdxA) |
||
8 × 6 8 × 8 |
Rigid |
all weights |
(17) |
|
|||||||||
|
ANNEX II
REQUIREMENTS AND PROCEDURES RELATED TO THE OPERATION OF THE SIMULATION TOOL
1. The processes to be set up by the vehicle manufacturer with a view to the operation of the simulation tool
2. Assessment by the approval authority
Appendix 1
MODEL OF AN INFORMATION DOCUMENT FOR THE PURPOSES OF OPERATING THE SIMULATION TOOL WITH A VIEW TO DETERMINING THE CO
2
EMISSIONS AND FUEL CONSUMPTION OF NEW VEHICLES
SECTION I
SECTION II
1. Additional information
Appendix 2
MODEL OF A LICENCE TO OPERATE THE SIMULATION TOOL WITH A VIEW TO DETERMINING CO
2
EMISSIONS AND FUEL CONSUMPTION OF NEW VEHICLES
Maximum format: A4 (210 × 297 mm)
LICENCE TO OPERATE THE SIMULATION TOOL WITH A VIEW TO DETERMINING CO
2
EMISSIONS AND FUEL CONSUMPTION OF NEW VEHICLES
Communication concerning:
|
Administration stamp
|
SECTION I
SECTION II
1. Additional information
ANNEX III
INPUT INFORMATION RELATING TO THE CHARACTERISTIC OF THE VEHICLE
1. Introduction
2. Definitions
3. Set of input parameters
Parameter name |
Parameter ID |
Type |
Unit |
Description/Reference |
Manufacturer |
P235 |
token |
[-] |
|
ManufacturerAddress |
P252 |
token |
[-] |
|
Model |
P236 |
token |
[-] |
|
VIN |
P238 |
token |
[-] |
|
Date |
P239 |
dateTime |
[-] |
Date and time when the component-hash is created |
LegislativeClass |
P251 |
string |
[-] |
Allowed values: ‘N3’ |
VehicleCategory |
P036 |
string |
[-] |
Allowed values: ‘Rigid Truck’, ‘Tractor’ |
AxleConfiguration |
P037 |
string |
[-] |
Allowed values: ‘4×2’, ‘6×2’, ‘6×4’, ‘8×4’ |
CurbMassChassis |
P038 |
int |
[kg] |
|
GrossVehicleMass |
P041 |
int |
[kg] |
|
IdlingSpeed |
P198 |
int |
[1/min] |
|
RetarderType |
P052 |
string |
[-] |
Allowed values: ‘None’, ‘Losses included in Gearbox’, ‘Engine Retarder’, ‘Transmission Input Retarder’, ‘Transmission Output Retarder’ |
RetarderRatio |
P053 |
double, 3 |
[-] |
|
AngledriveType |
P180 |
string |
[-] |
Allowed values: ‘None’, ‘Losses included in Gearbox’, ‘Separate Angledrive’ |
PTOShaftsGearWheels |
P247 |
string |
[-] |
Allowed values: ‘none’, ‘only the drive shaft of the PTO’, ‘drive shaft and/or up to 2 gear wheels’, ‘drive shaft and/or more than 2 gear wheels’, ‘only one engaged gearwheel above oil level’ |
PTOOtherElements |
P248 |
string |
[-] |
Allowed values: ‘none’, ‘shift claw, synchronizer, sliding gearwheel’, ‘multi-disc clutch’, ‘multi-disc clutch, oil pump’ |
CertificationNumberEngine |
P261 |
token |
[-] |
|
CertificationNumberGearbox |
P262 |
token |
[-] |
|
CertificationNumberTorqueconverter |
P263 |
token |
[-] |
|
CertificationNumberAxlegear |
P264 |
token |
[-] |
|
CertificationNumberAngledrive |
P265 |
token |
[-] |
|
CertificationNumberRetarder |
P266 |
token |
[-] |
|
CertificationNumberTyre |
P267 |
token |
[-] |
|
CertificationNumberAirdrag |
P268 |
token |
[-] |
|
Parameter name |
Parameter ID |
Type |
Unit |
Description/Reference |
TwinTyres |
P045 |
boolean |
[-] |
|
AxleType |
P154 |
string |
[-] |
Allowed values: ‘VehicleNonDriven’, ‘VehicleDriven’ |
Steered |
P195 |
boolean |
|
|
Parameter name |
Parameter ID |
Type |
Unit |
Description/Reference |
Fan/Technology |
P181 |
string |
[-] |
Allowed values: ‘Crankshaft mounted - Electronically controlled visco clutch’, ‘Crankshaft mounted - Bimetallic controlled visco clutch’, ‘Crankshaft mounted - Discrete step clutch’, ‘Crankshaft mounted - On/off clutch’, ‘Belt driven or driven via transm. - Electronically controlled visco clutch’, ‘Belt driven or driven via transm. - Bimetallic controlled visco clutch’, ‘Belt driven or driven via transm. - Discrete step clutch’, ‘Belt driven or driven via transm. - On/off clutch’, ‘Hydraulic driven - Variable displacement pump’, ‘Hydraulic driven - Constant displacement pump’, ‘Electrically driven - Electronically controlled’ |
SteeringPump/Technology |
P182 |
string |
[-] |
Allowed values: ‘Fixed displacement’, ‘Fixed displacement with elec. control’, ‘Dual displacement’, ‘Variable displacement mech. controlled’, ‘Variable displacement elec. controlled’, ‘Electric’ Separate entry for each steered wheel axle required |
ElectricSystem/Technology |
P183 |
string |
[-] |
Allowed values: ‘Standard technology’, ‘Standard technology - LED headlights, all’ |
PneumaticSystem/Technology |
P184 |
string |
[-] |
Allowed values: ‘Small’, ‘Small + ESS’, ‘Small + visco clutch’ , ‘Small + mech. clutch’, ‘Small + ESS + AMS’, ‘Small + visco clutch + AMS’, ‘Small + mech. clutch + AMS’, ‘Medium Supply 1-stage’, ‘Medium Supply 1-stage + ESS’, ‘Medium Supply 1-stage + visco clutch’ , ‘Medium Supply 1-stage + mech. clutch’, ‘Medium Supply 1-stage + ESS + AMS’, ‘Medium Supply 1-stage + visco clutch + AMS’, ‘Medium Supply 1-stage + mech. clutch + AMS’, ‘Medium Supply 2-stage’, ‘Medium Supply 2-stage + ESS’, ‘Medium Supply 2-stage + visco clutch’ , ‘Medium Supply 2-stage + mech. clutch’, ‘Medium Supply 2-stage + ESS + AMS’, ‘Medium Supply 2-stage + visco clutch + AMS’, ‘Medium Supply 2-stage + mech. clutch + AMS’, ‘Large Supply’, ‘Large Supply + ESS’, ‘Large Supply + visco clutch’ , ‘Large Supply + mech. clutch’, ‘Large Supply + ESS + AMS’, ‘Large Supply + visco clutch + AMS’, ‘Large Supply + mech. clutch + AMS’; ‘Vacuum pump’ |
HVAC/Technology |
P185 |
string |
[-] |
Allowed values: ‘Default’ |
Parameter name |
Parameter ID |
Type |
Unit |
Description/Reference |
Gear |
P196 |
integer |
[-] |
only gear numbers need to be specified where vehicle related engine torque limits according to point 6 are applicable |
MaxTorque |
P197 |
integer |
[Nm] |
|
4. Vehicle mass
5. Hydraulically and mechanically driven axles
6. Gear dependent engine torque limits set by vehicle control
7. Vehicle specific engine idling speed
ANNEX IV
MODEL OF THE MANUFACTURER'S RECORDS FILE AND OF THE CUSTOMER INFORMATION FILE
PART I
Vehicle CO
2
emissions and fuel consumption – Manufacturer's records file
1. Vehicle, component, separate technical unit and systems data
1.1. Vehicle data
1.2. Main engine specifications
1.3. Main transmission specifications
1.4. Retarder specifications
1.5. Torque converter specification
1.6. Angle drive specifications
1.7. Axle specifications
1.8. Aerodynamics
1.9. Main tyre specifications
1.10. Main auxiliary specifications
1.11. Engine torque limitations
2. Mission profile and loading dependent values
2.1. Simulation parameters (for each profile/load/fuel combination)
2.2. Vehicle driving performance and information for simulation quality check
2.3. Fuel and CO
2
results
3. Software and user information
3.1. Software and user information
PART II
Vehicle CO
2
emissions and fuel consumption - Customer information file
1. Vehicle, component, separate technical unit and systems data
1.1. Vehicle data
1.2. Component, separate technical unit and systems data
PART III
CO
2
emissions and fuel consumption of the vehicle (for each payload/fuel combination)
|
Average vehicle speed |
CO2 emissions |
Fuel consumption |
||||
Long haul |
… km/h |
… g/km |
… g/t-km |
… g/m3-km |
… l/100 km |
… l/t-km |
… l/m3-km |
Long haul (EMS) |
… km/h |
… g/km |
… g/t-km |
… g/m3-km |
… l/100 km |
… l/t-km |
… l/m3-km |
Regional delivery |
… km/h |
… g/km |
… g/t-km |
… g/m3-km |
… l/100 km |
… l/t-km |
… l/m3-km |
Regional delivery (EMS) |
… km/h |
… g/km |
… g/t-km |
… g/m3-km |
… l/100 km |
… l/t-km |
… l/m3-km |
Urban delivery |
… km/h |
… g/km |
… g/t-km |
… g/m3-km |
… l/100 km |
… l/t-km |
… l/m3-km |
Municipal utility |
… km/h |
… g/km |
… g/t-km |
… g/m3-km |
… l/100 km |
… l/t-km |
… l/m3-km |
Construction |
… km/h |
… g/km |
… g/t-km |
… g/m3-km |
… l/100 km |
… l/t-km |
… l/m3-km |
|
Average vehicle speed |
CO2 emissions |
Fuel consumption |
||||
Long haul |
… km/h |
… g/km |
… g/t-km |
… g/m3-km |
… l/100 km |
… l/t-km |
… l/m3-km |
Long haul (EMS) |
… km/h |
… g/km |
… g/t-km |
… g/m3-km |
… l/100 km |
… l/t-km |
… l/m3-km |
Regional delivery |
… km/h |
… g/km |
… g/t-km |
… g/m3-km |
… l/100 km |
… l/t-km |
… l/m3-km |
Regional delivery (EMS) |
… km/h |
… g/km |
… g/t-km |
… g/m3-km |
… l/100 km |
… l/t-km |
… l/m3-km |
Urban delivery |
… km/h |
… g/km |
… g/t-km |
… g/m3-km |
… l/100 km |
… l/t-km |
… l/m3-km |
Municipal utility |
… km/h |
… g/km |
… g/t-km |
… g/m3-km |
… l/100 km |
… l/t-km |
… l/m3-km |
Construction |
… km/h |
… g/km |
… g/t-km |
… g/m3-km |
… l/100 km |
… l/t-km |
… l/m3-km |
Software and user information |
Simulation tool version |
[X.X.X] |
Date and time of the simulation |
[-] |
ANNEX V
VERIFYING ENGINE DATA
1. Introduction
2. Definitions
3. General requirements
3.1 Test conditions
3.1.1 Laboratory test conditions
3.1.2 Engine installation
3.1.3 Crankcase emissions
3.1.4 Engines with charge air-cooling
3.1.5 Engine cooling system
3.2 Fuels
Fuel type / engine type |
Reference fuel type |
Standard used for determination of NCV |
Diesel / CI |
B7 |
at least ASTM D240 or DIN 59100-1 (ASTM D4809 is recommended) |
Ethanol / CI |
ED95 |
at least ASTM D240 or DIN 59100-1 (ASTM D4809 is recommended) |
Petrol / PI |
E10 |
at least ASTM D240 or DIN 59100-1 (ASTM D4809 is recommended) |
Ethanol / PI |
E85 |
at least ASTM D240 or DIN 59100-1 (ASTM D4809 is recommended) |
LPG / PI |
LPG Fuel B |
ASTM 3588 or DIN 51612 |
Natural Gas / PI |
G25 |
ISO 6976 or ASTM 3588 |
3.3 Lubricants
3.4 Fuel flow measurement system
3.5 Measurement equipment specifications
|
Linearity |
|
||||
Measurement system |
Intercept | xmin × (a1 – 1) + a0 | |
Slope a1 |
Standard error of estimate SEE |
Coefficient of determination r2 |
Accuracy(1) |
Rise time(2) |
Engine speed |
≤ 0,2 % max calibration(3) |
0,999 - 1,001 |
≤ 0,1 % max calibration(3) |
≥ 0,9985 |
0,2 % of reading or 0,1 % of max. calibration(3) of speed whichever is larger |
≤ 1 s |
Engine torque |
≤ 0,5 % max calibration(3) |
0,995 - 1,005 |
≤ 0,5 % max calibration(3) |
≥ 0,995 |
0,6 % of reading or 0,3 % of max. calibration(3) of torque whichever is larger |
≤ 1 s |
Fuel mass flow for liquid fuels |
≤ 0,5 % max calibration(3) |
0,995 - 1,005 |
≤ 0,5 % max calibration(3) |
≥ 0,995 |
0,6 % of reading or 0,3 % of max. calibration(3) of flow whichever is larger |
≤ 2 s |
Fuel mass flow for gaseous fuels |
≤ 1 % max calibration(3) |
0,99 - 1,01 |
≤ 1 % max calibration(3) |
≥ 0,995 |
1 % of reading or 0,5 % of max. calibration(3) of flow whichever is larger |
≤ 2 s |
Electrical Power |
≤ 1 % max calibration(3) |
0,98 - 1,02 |
≤ 2 % max calibration(3) |
≥ 0,990 |
n.a. |
≤ 1 s |
Current |
≤ 1 % max calibration(3) |
0,98 - 1,02 |
≤ 2 % max calibration(3) |
≥ 0,990 |
n.a. |
≤ 1 s |
Voltage |
≤ 1 % max calibration(3) |
0,98 - 1,02 |
≤ 2 % max calibration(3) |
≥ 0,990 |
n.a. |
≤ 1 s |
3.5.1 Measurement equipment verification
4. Testing procedure
4.1 Overview of testruns to be performed
Testrun |
Reference to paragraph |
Required to be run for CO2-parent engine |
Required to be run for other engines within CO2-family |
Engine full load curve |
4.3.1 |
yes |
yes |
Engine motoring curve |
4.3.2 |
yes |
no |
WHTC test |
4.3.3 |
yes |
yes |
WHSC test |
4.3.4 |
yes |
yes |
Fuel consumption mapping cycle |
4.3.5 |
yes |
no |
4.2 Allowed changes to the engine system
4.3 Testruns
4.3.1 Engine full load curve
4.3.2 Engine motoring curve
4.3.3 WHTC test
4.3.3.1 Measurement signals and data recording
4.3.4 WHSC test
4.3.4.1 Measurement signals and data recording
4.3.5 Fuel consumption mapping cycle (FCMC)
4.3.5.1 Handling of interruptions during the FCMC
4.3.5.1.1 Provisions for continuing the FCMC
4.3.5.2 Grid of target setpoints
4.3.5.2.1 Definition of target engine speed setpoints
Figure 1
Definition of speed setpoints
4.3.5.2.2 Definition of target torque setpoints
Figure 2
Definition of torque setpoints
4.3.5.3 Measurement signals and data recording
4.3.5.4 Preconditioning of the engine system
4.3.5.5 Test sequence
Figure 3
Steps to be performed at each measurement setpoint
Figure 4
Sequence of steady state measurement setpoints
4.3.5.6 Data evaluation for emission monitoring
4.3.5.6.1 Definition of control area
4.3.5.6.1.1 Engine speed range for the control area
4.3.5.6.1.2 Engine torque and power range for the control area
Figure 5
Definition of the engine speed, torque and power range for the control area exemplarily
4.3.5.6.2 Definition of the grid cells
Figure 6
Definition of the grid cells for the control area exemplarily for 9 cell grid
4.3.5.6.3 Calculation of specific mass emissions
4.3.5.7 Validity of data
4.3.5.7.1 Requirements for validation statistics of the FCMC
4.3.5.7.2 Requirements for emission monitoring
5. Post-processing of measurement data
5.1 Calculation of engine work
5.2 Calculation of integrated fuel consumption
5.3 Calculation of specific fuel consumption figures
5.3.1 Specific fuel consumption figures for WHTC correction factor
5.3.2 Specific fuel consumption figures for cold-hot emission balancing factor
5.3.3 Specific fuel consumption figures over WHSC
5.3.3.1 Corrected specific fuel consumption figures over WHSC
Fuel type / engine type |
Reference fuel type |
Standard NCV [MJ/kg] |
Diesel / CI |
B7 |
42,7 |
Ethanol / CI |
ED95 |
25,7 |
Petrol / PI |
E10 |
41,5 |
Ethanol / PI |
E85 |
29,1 |
LPG / PI |
LPG Fuel B |
46,0 |
Natural Gas / PI |
G25 |
45,1 |
5.3.3.2 Special provisions for B7 reference fuel
5.4 Correction factor for engines equipped with exhaust after-treatment systems that are regenerated on a periodic basis
6. Application of engine pre-processing tool
6.1 Input data for the engine pre-processing tool
6.1.1 Full load curve of the CO
2
-parent engine
6.1.2 Full load curve
6.1.3 Motoring curve of the CO
2
-parent engine
6.1.4 Fuel consumption map of the CO
2
-parent engine
6.1.5 Specific fuel consumption figures for WHTC correction factor
6.1.6 Specific fuel consumption figures for cold-hot emission balancing factor
6.1.7 Correction factor for engines equipped with exhaust after-treatment systems that are regenerated on a periodic basis
6.1.8 NCV of test fuel
6.1.9 Type of test fuel
6.1.10 Engine idle speed of the CO
2
-parent engine
6.1.11 Engine idle speed
6.1.12 Engine displacement
6.1.13 Engine rated speed
6.1.14 Engine rated power
6.1.15 Manufacturer
6.1.16 Model
6.1.17 Technical Report ID
Appendix 1
MODEL OF A CERTIFICATE OF A COMPONENT, SEPARATE TECHNICAL UNIT OR SYSTEM
Maximum format: A4 (210 × 297 mm)
CERTIFICATE ON CO
2
EMISSIONS AND FUEL CONSUMPTION RELATED PROPERTIES OF AN ENGINE FAMILY
Communication concerning:
|
Administration stamp
|
SECTION I
0.3. Means of identification of type
SECTION II
Appendix 2
Engine Information Document
Notes regarding filling in the tables:
|
|
CO2-parent engine |
Engine CO2-family members |
||||
A |
B |
C |
D |
E |
|||
0. |
General |
||||||
0.l. |
Make (trade name of manufacturer) |
|
|||||
0.2. |
Type |
|
|||||
0.2.1. |
Commercial name(s) (if available) |
|
|
|
|
|
|
0.5. |
Name and address of manufacturer |
|
|||||
0.8. |
Name(s) and address (es) of assembly plant(s) |
|
|
|
|
|
|
0.9. |
Name and address of the manufacturer's representative (if any) |
|
PART 1
Essential characteristics of the (parent) engine and the engine types within an engine family
|
|
Parent engine or engine type |
Engine CO2-family members |
|||||||||||
A |
B |
C |
D |
E |
||||||||||
3.2. |
Internal combustion engine |
|
|
|
|
|
|
|||||||
3.2.1. |
Specific engine information |
|
|
|
|
|
|
|||||||
3.2.1.1. |
Working principle: positive ignition/compression ignition (1) Cycle four stroke/two stroke/ rotary (1) |
|
||||||||||||
3.2.1.2. |
Number and arrangement of cylinders |
|
|
|
|
|
|
|||||||
3.2.1.2.1. |
Bore (3) mm |
|
|
|
|
|
|
|||||||
3.2.1.2.2. |
Stroke (3) mm |
|
|
|
|
|
|
|||||||
3.2.1.2.3. |
Firing order |
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3.2.1.3. |
Engine capacity (4) cm3 |
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|||||||
3.2.1.4. |
Volumetric compression ratio (5) |
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|||||||
3.2.1.5. |
Drawings of combustion chamber, piston crown and, in the case of positive ignition engines, piston rings |
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|||||||
3.2.1.6. |
Normal engine idling speed (5) min– 1 |
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3.2.1.6.1. |
High engine idling speed (5) min– 1 |
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|||||||
3.2.1.7. |
Carbon monoxide content by volume in the exhaust gas with the engine idling (5): % as stated by the manufacturer (positive ignition engines only) |
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|||||||
3.2.1.8. |
Maximum net power (6) … kW at … min– 1 (manufacturer's declared value) |
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3.2.1.9. |
Maximum permitted engine speed as prescribed by the manufacturer (min– 1) |
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|||||||
3.2.1.10. |
Maximum net torque (6) (Nm) at (min– 1) (manufacturer's declared value) |
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|||||||
3.2.1.11. |
Manufacturer references of the documentation package required by paragraphs 3.1., 3.2. and 3.3. of UN/ECE Regulation 49 Rev. 06 enabling the Type Approval Authority to evaluate the emission control strategies and the systems on-board the engine to ensure the correct operation of NOx control measures |
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3.2.2. |
Fuel |
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3.2.2.2. |
Heavy duty vehicles Diesel/Petrol/LPG/NG-H/NG-L/NG-HL/Ethanol (ED95)/ Ethanol (E85) (1) |
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3.2.2.2.1. |
Fuels compatible with use by the engine declared by the manufacturer in accordance with paragraph 4.6.2. of UN/ECE Regulation 49 Rev. 06 (as applicable) |
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3.2.4. |
Fuel feed |
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3.2.4.2. |
By fuel injection (compression ignition only): Yes/No (1) |
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3.2.4.2.1. |
System description |
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3.2.4.2.2. |
Working principle: direct injection/pre-chamber/swirl chamber (1) |
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3.2.4.2.3. |
Injection pump |
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3.2.4.2.3.1. |
Make(s) |
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3.2.4.2.3.2. |
Type(s) |
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3.2.4.2.3.3. |
Maximum fuel delivery (1) (5) … mm3 /stroke or cycle at an engine speed of … min– 1 or, alternatively, a characteristic diagram (When boost control is supplied, state the characteristic fuel delivery and boost pressure versus engine speed) |
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|||||||
3.2.4.2.3.4. |
Static injection timing (5) |
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3.2.4.2.3.5. |
Injection advance curve (5) |
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|||||||
3.2.4.2.3.6. |
Calibration procedure: test bench/engine (1) |
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|||||||
3.2.4.2.4. |
Governor |
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3.2.4.2.4.1. |
Type |
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|||||||
3.2.4.2.4.2. |
Cut-off point |
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3.2.4.2.4.2.1. |
Speed at which cut-off starts under load (min– 1) |
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|||||||
3.2.4.2.4.2.2. |
Maximum no-load speed (min– 1) |
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|||||||
3.2.4.2.4.2.3. |
Idling speed (min– 1) |
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|||||||
3.2.4.2.5. |
Injection piping |
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|||||||
3.2.4.2.5.1. |
Length (mm) |
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|||||||
3.2.4.2.5.2. |
Internal diameter (mm) |
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|||||||
3.2.4.2.5.3. |
Common rail, make and type |
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|||||||
3.2.4.2.6. |
Injector(s) |
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|||||||
3.2.4.2.6.1. |
Make(s) |
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|||||||
3.2.4.2.6.2. |
Type(s) |
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|||||||
3.2.4.2.6.3. |
Opening pressure (5): |
kPa or characteristic diagram (5) |
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||||||
3.2.4.2.7. |
Cold start system |
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|||||||
3.2.4.2.7.1. |
Make(s) |
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|||||||
3.2.4.2.7.2. |
Type(s) |
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|||||||
3.2.4.2.7.3. |
Description |
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|||||||
3.2.4.2.8. |
Auxiliary starting aid |
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|||||||
3.2.4.2.8.1. |
Make(s) |
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|||||||
3.2.4.2.8.2. |
Type(s) |
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|||||||
3.2.4.2.8.3. |
System description |
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|||||||
3.2.4.2.9. |
Electronic controlled injection: Yes/No (1) |
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|||||||
3.2.4.2.9.1. |
Make(s) |
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|||||||
3.2.4.2.9.2. |
Type(s) |
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|||||||
3.2.4.2.9.3. |
Description of the system (in the case of systems other than continuous injection give equivalent details) |
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|||||||
3.2.4.2.9.3.1. |
Make and type of the control unit (ECU) |
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|||||||
3.2.4.2.9.3.2. |
Make and type of the fuel regulator |
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|||||||
3.2.4.2.9.3.3. |
Make and type of the air-flow sensor |
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|||||||
3.2.4.2.9.3.4. |
Make and type of fuel distributor |
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|||||||
3.2.4.2.9.3.5. |
Make and type of the throttle housing |
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|||||||
3.2.4.2.9.3.6. |
Make and type of water temperature sensor |
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|||||||
3.2.4.2.9.3.7. |
Make and type of air temperature sensor |
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|||||||
3.2.4.2.9.3.8. |
Make and type of air pressure sensor |
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|||||||
3.2.4.2.9.3.9. |
Software calibration number(s) |
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|||||||
3.2.4.3. |
By fuel injection (positive ignition only): Yes/No (1) |
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|||||||
3.2.4.3.1. |
Working principle: intake manifold (single-/multi-point/direct injection (1)/other specify) |
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|||||||
3.2.4.3.2. |
Make(s) |
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|||||||
3.2.4.3.3. |
Type(s) |
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|||||||
3.2.4.3.4. |
System description (In the case of systems other than continuous injection give equivalent details) |
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|
|||||||
3.2.4.3.4.1. |
Make and type of the control unit (ECU) |
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|||||||
3.2.4.3.4.2. |
Make and type of fuel regulator |
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|||||||
3.2.4.3.4.3. |
Make and type of air-flow sensor |
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|||||||
3.2.4.3.4.4. |
Make and type of fuel distributor |
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|||||||
3.2.4.3.4.5. |
Make and type of pressure regulator |
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|||||||
3.2.4.3.4.6. |
Make and type of micro switch |
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|||||||
3.2.4.3.4.7. |
Make and type of idling adjustment screw |
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|||||||
3.2.4.3.4.8. |
Make and type of throttle housing |
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|||||||
3.2.4.3.4.9. |
Make and type of water temperature sensor |
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|||||||
3.2.4.3.4.10. |
Make and type of air temperature sensor |
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|||||||
3.2.4.3.4.11. |
Make and type of air pressure sensor |
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|||||||
3.2.4.3.4.12. |
Software calibration number(s) |
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|||||||
3.2.4.3.5. |
Injectors: opening pressure (5) (kPa) or characteristic diagram (5) |
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|||||||
3.2.4.3.5.1. |
Make |
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|||||||
3.2.4.3.5.2. |
Type |
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|||||||
3.2.4.3.6. |
Injection timing |
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|
|||||||
3.2.4.3.7. |
Cold start system |
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|
|||||||
3.2.4.3.7.1. |
Operating principle(s) |
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|||||||
3.2.4.3.7.2. |
Operating limits/settings (1) (5) |
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|
|||||||
3.2.4.4. |
Feed pump |
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|||||||
3.2.4.4.1. |
Pressure (5) (kPa) or characteristic diagram (5) |
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|
|||||||
3.2.5. |
Electrical system |
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|
|||||||
3.2.5.1. |
Rated voltage (V), positive/negative ground (1) |
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|
|||||||
3.2.5.2. |
Generator |
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|
|||||||
3.2.5.2.1. |
Type |
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|
|||||||
3.2.5.2.2. |
Nominal output (VA) |
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|
|||||||
3.2.6. |
Ignition system (spark ignition engines only) |
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|
|||||||
3.2.6.1. |
Make(s) |
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|||||||
3.2.6.2. |
Type(s) |
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|
|||||||
3.2.6.3. |
Working principle |
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|
|||||||
3.2.6.4. |
Ignition advance curve or map (5) |
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|
|||||||
3.2.6.5. |
Static ignition timing (5) (degrees before TDC) |
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|
|||||||
3.2.6.6. |
Spark plugs |
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|
|||||||
3.2.6.6.1. |
Make |
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|||||||
3.2.6.6.2. |
Type |
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|||||||
3.2.6.6.3. |
Gap setting (mm) |
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|
|||||||
3.2.6.7. |
Ignition coil(s) |
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|
|||||||
3.2.6.7.1. |
Make |
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|||||||
3.2.6.7.2. |
Type |
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|
|||||||
3.2.7. |
Cooling system: liquid/air (1) |
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|||||||
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||||||||||||||
3.2.7.2. |
Liquid |
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|||||||
3.2.7.2.1. |
Nature of liquid |
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|||||||
3.2.7.2.2. |
Circulating pump(s): Yes/No (1) |
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|||||||
3.2.7.2.3. |
Characteristics |
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|
|||||||
3.2.7.2.3.1. |
Make(s) |
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|||||||
3.2.7.2.3.2. |
Type(s) |
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|||||||
3.2.7.2.4. |
Drive ratio(s) |
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|||||||
3.2.7.3. |
Air |
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|
|||||||
3.2.7.3.1. |
Fan: Yes/No (1) |
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|||||||
3.2.7.3.2. |
Characteristics |
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|
|||||||
3.2.7.3.2.1. |
Make(s) |
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|||||||
3.2.7.3.2.2. |
Type(s) |
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|||||||
3.2.7.3.3. |
Drive ratio(s) |
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|||||||
3.2.8. |
Intake system |
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|
|||||||
3.2.8.1. |
Pressure charger: Yes/No (1) |
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|||||||
3.2.8.1.1. |
Make(s) |
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|||||||
3.2.8.1.2. |
Type(s) |
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|||||||
3.2.8.1.3. |
Description of the system (e.g. maximum charge pressure … kPa, wastegate, if applicable) |
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|
|||||||
3.2.8.2. |
Intercooler: Yes/No (1) |
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|
|||||||
3.2.8.2.1. |
Type: air-air/air-water (1) |
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|
|||||||
3.2.8.3. |
Intake depression at rated engine speed and at 100 % load (compression ignition engines only) |
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|
|||||||
3.2.8.3.1. |
Minimum allowable (kPa) |
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|
|||||||
3.2.8.3.2. |
Maximum allowable (kPa) |
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|
|||||||
3.2.8.4. |
Description and drawings of inlet pipes and their accessories (plenum chamber, heating device, additional air intakes, etc.) |
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|
|||||||
3.2.8.4.1. |
Intake manifold description (include drawings and/or photos) |
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|
|||||||
3.2.9. |
Exhaust system |
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|
|||||||
3.2.9.1. |
Description and/or drawings of the exhaust manifold |
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|
|||||||
3.2.9.2. |
Description and/or drawing of the exhaust system |
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|
|||||||
3.2.9.2.1. |
Description and/or drawing of the elements of the exhaust system that are part of the engine system |
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|
|||||||
3.2.9.3. |
Maximum allowable exhaust back pressure at rated engine speed and at 100 % load (compression ignition engines only)(kPa) (7) |
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|||||||
|
||||||||||||||
3.2.9.7. |
Exhaust system volume (dm3) |
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|
|||||||
3.2.9.7.1. |
Acceptable Exhaust system volume: (dm3) |
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|
|||||||
3.2.10. |
Minimum cross-sectional areas of inlet and outlet ports and port geometry |
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|
|||||||
3.2.11. |
Valve timing or equivalent data |
|||||||||||||
3.2.11.1. |
Maximum lift of valves, angles of opening and closing, or timing details of alternative distribution systems, in relation to dead centers. For variable timing system, minimum and maximum timing |
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|
|||||||
3.2.11.2. |
Reference and/or setting range (7) |
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|
|||||||
3.2.12. |
Measures taken against air pollution |
|||||||||||||
|
||||||||||||||
3.2.12.1.1. |
Device for recycling crankcase gases: Yes/No (1) If yes, description and drawings If no, compliance with paragraph 6.10. of Annex 4 of UN/ECE Regulation 49 Rev. 06 required |
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|
|||||||
3.2.12.2. |
Additional pollution control devices (if any, and if not covered by another heading) |
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|
|||||||
3.2.12.2.1. |
Catalytic converter: Yes/No (1) |
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|
|||||||
3.2.12.2.1.1. |
Number of catalytic converters and elements (provide this information below for each separate unit) |
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|
|||||||
3.2.12.2.1.2. |
Dimensions, shape and volume of the catalytic converter(s) |
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|
|||||||
3.2.12.2.1.3. |
Type of catalytic action |
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|
|||||||
3.2.12.2.1.4. |
Total charge of precious metals |
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|
|||||||
3.2.12.2.1.5. |
Relative concentration |
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|
|||||||
3.2.12.2.1.6. |
Substrate (structure and material) |
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|
|||||||
3.2.12.2.1.7. |
Cell density |
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|
|||||||
3.2.12.2.1.8. |
Type of casing for the catalytic converter(s) |
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|
|||||||
3.2.12.2.1.9. |
Location of the catalytic converter(s) (place and reference distance in the exhaust line) |
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|
|||||||
3.2.12.2.1.10. |
Heat shield: Yes/No (1) |
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|
|||||||
3.2.12.2.1.11. |
Regeneration systems/method of exhaust after treatment systems, description |
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|||||||
|
||||||||||||||
3.2.12.2.1.11.5. |
Normal operating temperature range (K) |
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|
|||||||
3.2.12.2.1.11.6. |
Consumable reagents: Yes/No (1) |
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|
|||||||
3.2.12.2.1.11.7. |
Type and concentration of reagent needed for catalytic action |
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|
|||||||
3.2.12.2.1.11.8. |
Normal operational temperature range of reagent K |
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|
|||||||
3.2.12.2.1.11.9. |
International standard |
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|
|||||||
3.2.12.2.1.11.10. |
Frequency of reagent refill: continuous/maintenance (1) |
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|
|||||||
3.2.12.2.1.12. |
Make of catalytic converter |
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|
|||||||
3.2.12.2.1.13. |
Identifying part number |
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|
|||||||
3.2.12.2.2. |
Oxygen sensor: Yes/No (1) |
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|||||||
3.2.12.2.2.1. |
Make |
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3.2.12.2.2.2. |
Location |
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3.2.12.2.2.3. |
Control range |
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3.2.12.2.2.4. |
Type |
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|||||||
3.2.12.2.2.5. |
Indentifying part number |
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3.2.12.2.3. |
Air injection: Yes/No (1) |
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|||||||
3.2.12.2.3.1. |
Type (pulse air, air pump, etc.) |
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|||||||
3.2.12.2.4. |
Exhaust gas recirculation (EGR): Yes/No (1) |
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|||||||
3.2.12.2.4.1. |
Characteristics (make, type, flow, etc) |
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|||||||
3.2.12.2.6. |
Particulate trap (PT): Yes/No (1) |
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|||||||
3.2.12.2.6.1. |
Dimensions, shape and capacity of the particulate trap |
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|||||||
3.2.12.2.6.2. |
Design of the particulate trap |
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|||||||
3.2.12.2.6.3. |
Location (reference distance in the exhaust line) |
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|||||||
3.2.12.2.6.4. |
Method or system of regeneration, description and/or drawing |
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3.2.12.2.6.5. |
Make of particulate trap |
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|||||||
3.2.12.2.6.6. |
Indentifying part number |
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3.2.12.2.6.7. |
Normal operating temperature (K) and pressure (kPa) ranges |
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|||||||
3.2.12.2.6.8. |
In the case of periodic regeneration |
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|||||||
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||||||||||||||
3.2.12.2.6.8.1.1. |
Number of WHTC test cycles without regeneration (n) |
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|||||||
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|||||||
3.2.12.2.6.8.2.1. |
Number of WHTC test cycles with regeneration (nR) |
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|||||||
3.2.12.2.6.9. |
Other systems: Yes/No (1) |
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|||||||
3.2.12.2.6.9.1. |
Description and operation |
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|||||||
3.2.12.2.7. |
On-board-diagnostic (OBD) system |
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|||||||
3.2.12.2.7.0.1. |
Number of OBD engine families within the engine family |
|
||||||||||||
3.2.12.2.7.0.2. |
List of the OBD engine families (when applicable) |
OBD engine family 1: … |
||||||||||||
OBD engine family 2: … |
||||||||||||||
etc … |
||||||||||||||
3.2.12.2.7.0.3. |
Number of the OBD engine family the parent engine / the engine member belongs to |
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|||||||
3.2.12.2.7.0.4. |
Manufacturer references of the OBD-Documentation required by paragraph 3.1.4. (c) and paragraph 3.3.4. of UN/ECE Regulation 49 Rev. 06 and specified in Annex 9A of UN/ECE Regulation 49 Rev. 06 for the purpose of approving the OBD system |
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|||||||
3.2.12.2.7.0.5. |
When appropriate, manufacturer reference of the Documentation for installing in a vehicle an OBD equipped engine system |
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|||||||
|
||||||||||||||
3.2.12.2.7.2. |
List and purpose of all components monitored by the OBD system (8) |
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|||||||
3.2.12.2.7.3. |
Written description (general working principles) for |
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|||||||
3.2.12.2.7.3.1. |
Positive-ignition engines (8) |
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|||||||
3.2.12.2.7.3.1.1. |
Catalyst monitoring (8) |
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|||||||
3.2.12.2.7.3.1.2. |
Misfire detection (8) |
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|||||||
3.2.12.2.7.3.1.3. |
Oxygen sensor monitoring (8) |
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|||||||
3.2.12.2.7.3.1.4. |
Other components monitored by the OBD system |
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|||||||
3.2.12.2.7.3.2. |
Compression-ignition engines (8) |
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|||||||
3.2.12.2.7.3.2.1. |
Catalyst monitoring (8) |
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|||||||
3.2.12.2.7.3.2.2. |
Particulate trap monitoring (8) |
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|||||||
3.2.12.2.7.3.2.3. |
Electronic fuelling system monitoring (8) |
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|||||||
3.2.12.2.7.3.2.4. |
DeNOx system monitoring (8) |
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|||||||
3.2.12.2.7.3.2.5. |
Other components monitored by the OBD system (8) |
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|||||||
3.2.12.2.7.4. |
Criteria for MI activation (fixed number of driving cycles or statistical method) (8) |
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|||||||
3.2.12.2.7.5. |
List of all OBD output codes and formats used (with explanation of each) (8) |
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|||||||
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||||||||||||||
3.2.12.2.7.6.5. |
OBD Communication protocol standard (8) |
|
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|||||||
3.2.12.2.7.7. |
Manufacturer reference of the OBD related information required by of paragraphs 3.1.4. (d) and 3.3.4. of UN/ECE Regulation 49 Rev. 06 for the purpose of complying with the provisions on access to vehicle OBD, or |
|
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|||||||
3.2.12.2.7.7.1. |
As an alternative to a manufacturer reference provided in paragraph 3.2.12.2.7.7. reference of the attachment to this annex that contains the following table, once completed according to the given example:
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|||||||
3.2.12.2.8. |
Other system (description and operation) |
|
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|||||||
3.2.12.2.8.1. |
Systems to ensure the correct operation of NOx control measures |
|
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|||||||
3.2.12.2.8.2. |
Engine with permanent deactivation of the driver inducement, for use by the rescue services or in vehicles designed and constructed for use by the armed services, civil defence, fire services and forces responsible for maintaining public order: Yes/No (1) |
|
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|
|||||||
3.2.12.2.8.3. |
Number of OBD engine families within the engine family considered when ensuring the correct operation of NOx control measures |
|
||||||||||||
3.2.12.2.8.4. |
List of the OBD engine families (when applicable) |
OBD engine family 1: … OBD engine family 2: … etc … |
||||||||||||
3.2.12.2.8.5. |
Number of the OBD engine family the parent engine / the engine member belongs to |
|
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|
|||||||
3.2.12.2.8.6. |
Lowest concentration of the active ingredient present in the reagent that does not activate the warning system (CDmin) (% vol) |
|
||||||||||||
3.2.12.2.8.7. |
When appropriate, manufacturer reference of the Documentation for installing in a vehicle the systems to ensure the correct operation of NOx control measures |
|
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|||||||
|
||||||||||||||
3.2.17. |
Specific information related to gas fuelled engines for heavy-duty vehicles (in the case of systems laid out in a different manner, supply equivalent information) |
|
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|
|||||||
3.2.17.1. |
Fuel: LPG /NG-H/NG-L /NG-HL (1) |
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|||||||
3.2.17.2. |
Pressure regulator(s) or vaporiser/pressure regulator(s) (1) |
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|||||||
3.2.17.2.1. |
Make(s) |
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|||||||
3.2.17.2.2. |
Type(s) |
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|||||||
3.2.17.2.3. |
Number of pressure reduction stages |
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|||||||
3.2.17.2.4. |
Pressure in final stage minimum (kPa) – maximum. (kPa) |
|
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|||||||
3.2.17.2.5. |
Number of main adjustment points |
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|||||||
3.2.17.2.6. |
Number of idle adjustment points |
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|
|||||||
3.2.17.2.7. |
Type approval number |
|
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|||||||
3.2.17.3. |
Fuelling system: mixing unit / gas injection / liquid injection / direct injection (1) |
|
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|
|||||||
3.2.17.3.1. |
Mixture strength regulation |
|
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|||||||
3.2.17.3.2. |
System description and/or diagram and drawings |
|
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|
|||||||
3.2.17.3.3. |
Type approval number |
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|
|||||||
3.2.17.4. |
Mixing unit |
|
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|
|||||||
3.2.17.4.1. |
Number |
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|
|||||||
3.2.17.4.2. |
Make(s) |
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|
|||||||
3.2.17.4.3. |
Type(s) |
|
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|
|||||||
3.2.17.4.4. |
Location |
|
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|
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|
|||||||
3.2.17.4.5. |
Adjustment possibilities |
|
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|
|||||||
3.2.17.4.6. |
Type approval number |
|
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|
|||||||
3.2.17.5. |
Inlet manifold injection |
|
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|
|||||||
3.2.17.5.1. |
Injection: single point/multipoint (1) |
|
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|||||||
3.2.17.5.2. |
Injection: continuous/simultaneously timed/sequentially timed (1) |
|
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|
|||||||
3.2.17.5.3. |
Injection equipment |
|
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|
|||||||
3.2.17.5.3.1. |
Make(s) |
|
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|||||||
3.2.17.5.3.2. |
Type(s) |
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|||||||
3.2.17.5.3.3. |
Adjustment possibilities |
|
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|
|||||||
3.2.17.5.3.4. |
Type approval number |
|
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|||||||
3.2.17.5.4. |
Supply pump (if applicable) |
|
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|||||||
3.2.17.5.4.1. |
Make(s) |
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|||||||
3.2.17.5.4.2. |
Type(s) |
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|
|||||||
3.2.17.5.4.3. |
Type approval number |
|
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|||||||
3.2.17.5.5. |
Injector(s) |
|
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|
|||||||
3.2.17.5.5.1. |
Make(s) |
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|
|||||||
3.2.17.5.5.2. |
Type(s) |
|
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|
|||||||
3.2.17.5.5.3. |
Type approval number |
|
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|
|||||||
3.2.17.6. |
Direct injection |
|
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|
|||||||
3.2.17.6.1. |
Injection pump/pressure regulator (1) |
|
|
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|
|||||||
3.2.17.6.1.1. |
Make(s) |
|
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|||||||
3.2.17.6.1.2. |
Type(s) |
|
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|
|||||||
3.2.17.6.1.3. |
Injection timing |
|
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|
|||||||
3.2.17.6.1.4. |
Type approval number |
|
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|
|||||||
3.2.17.6.2. |
Injector(s) |
|
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|
|||||||
3.2.17.6.2.1. |
Make(s) |
|
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|
|||||||
3.2.17.6.2.2. |
Type(s) |
|
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|
|||||||
3.2.17.6.2.3. |
Opening pressure or characteristic diagram (1) |
|
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|
|||||||
3.2.17.6.2.4. |
Type approval number |
|
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|
|||||||
3.2.17.7. |
Electronic control unit (ECU) |
|
|
|
|
|
|
|||||||
3.2.17.7.1. |
Make(s) |
|
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|
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|
|||||||
3.2.17.7.2. |
Type(s) |
|
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|
|||||||
3.2.17.7.3. |
Adjustment possibilities |
|
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|
|||||||
3.2.17.7.4. |
Software calibration number(s) |
|
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|
|||||||
3.2.17.8. |
NG fuel-specific equipment |
|
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|
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|
|||||||
3.2.17.8.1. |
Variant 1 (only in the case of approvals of engines for several specific fuel compositions) |
|
|
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|
|
|
|||||||
3.2.17.8.1.0.1. |
Self-adaptive feature? Yes/No (1) |
|
|
|
|
|
|
|||||||
3.2.17.8.1.0.2. |
Calibration for a specific gas composition NG-H/NG-L/NG-HL1 Transformation for a specific gas composition NG-Ht/NG-Lt/NG-HLt 1 |
|
|
|
|
|
|
|||||||
3.2.17.8.1.1. |
methane (CH4) … basis (%mole) ethane (C2H6) … basis (%mole) propane (C3H8) … basis (%mole) butane (C4H10) … basis (%mole) C5/C5+: … basis (%mole) oxygen (O2) … basis (%mole) inert (N2, He etc) … basis (%mole) |
min (%mole) min (%mole) min (%mole) min (%mole) min (%mole) min (%mole) min (%mole) |
max (%mole) max (%mole) max (%mole) max (%mole) max (%mole) max (%mole) max (%mole) |
|||||||||||
3.5.5. |
Specific fuel consumption and correction factors |
|
|
|
|
|
|
|||||||
3.5.5.1. |
Specific fuel consumption over WHSC ‘SFCWHSC’ in accordance with paragraph 5.3.3 g/kWh |
|
|
|
|
|
|
|||||||
3.5.5.2. |
Corrected specific fuel consumption over WHSC ‘SFCWHSC, corr’ in accordance with paragraph 5.3.3.1: … g/kWh |
|
|
|
|
|
|
|||||||
3.5.5.3. |
Correction factor for WHTC urban part (from output of engine pre-processing tool) |
|
|
|
|
|
|
|||||||
3.5.5.4. |
Correction factor for WHTC rural part (from output of engine pre-processing tool) |
|
|
|
|
|
|
|||||||
3.5.5.5. |
Correction factor for WHTC motorway part (from output of engine pre-processing tool) |
|
|
|
|
|
|
|||||||
3.5.5.6. |
Cold-hot emission balancing factor (from output of engine pre-processing tool) |
|
|
|
|
|
|
|||||||
3.5.5.7. |
Correction factor for engines equipped with exhaust after-treatment systems that are regenerated on a periodic basis CFRegPer (from output of engine pre-processing tool) |
|
|
|
|
|
|
|||||||
3.5.5.8. |
Correction factor to standard NCV (from output of engine pre-processing tool) |
|
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|
|
|
|
|||||||
3.6. |
Temperatures permitted by the manufacturer |
|
|
|
|
|
|
|||||||
3.6.1. |
Cooling system |
|
|
|
|
|
|
|||||||
3.6.1.1. |
Liquid cooling Maximum temperature at outlet (K) |
|
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|
|||||||
3.6.1.2. |
Air cooling |
|
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|
|||||||
3.6.1.2.1. |
Reference point |
|
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|
|||||||
3.6.1.2.2. |
Maximum temperature at reference point (K) |
|
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|
|||||||
3.6.2. |
Maximum outlet temperature of the inlet intercooler (K) |
|
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|
|||||||
3.6.3. |
Maximum exhaust temperature at the point in the exhaust pipe(s) adjacent to the outer flange(s) of the exhaust manifold(s) or turbocharger(s) (K) |
|
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|
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|
|||||||
3.6.4. |
Fuel temperature Minimum (K) – maximum (K) For diesel engines at injection pump inlet, for gas fuelled engines at pressure regulator final stage |
|
|
|
|
|
|
|||||||
3.6.5. |
Lubricant temperature Minimum (K) – maximum (K) |
|
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|
|
|||||||
|
||||||||||||||
3.8. |
Lubrication system |
|
|
|
|
|
|
|||||||
3.8.1. |
Description of the system |
|
|
|
|
|
|
|||||||
3.8.1.1. |
Position of lubricant reservoir |
|
|
|
|
|
|
|||||||
3.8.1.2. |
Feed system (by pump/injection into intake/mixing with fuel, etc.) (1) |
|
|
|
|
|
|
|||||||
3.8.2. |
Lubricating pump |
|
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|
|
|
|
|||||||
3.8.2.1. |
Make(s) |
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|
|||||||
3.8.2.2. |
Type(s) |
|
|
|
|
|
|
|||||||
3.8.3. |
Mixture with fuel |
|
|
|
|
|
|
|||||||
3.8.3.1. |
Percentage |
|
|
|
|
|
|
|||||||
3.8.4. |
Oil cooler: Yes/No (1) |
|
|
|
|
|
|
|||||||
3.8.4.1. |
Drawing(s) |
|
|
|
|
|
|
|||||||
3.8.4.1.1. |
Make(s) |
|
|
|
|
|
|
|||||||
3.8.4.1.2. |
Type(s) |
|
|
|
|
|
|
Appendix to information document
Information on test conditions
1. Spark plugs
2. Ignition coil
3. Lubricant used
4. Test fuel used
5. Engine-driven equipment
Equipment |
|
||||
|
Idle |
Low speed |
High speed |
Preferred speed (2) |
n95h |
Pa Auxiliaries/equipment required according to Annex 4, Appendix 6 of UN/ECE Regulation 49 Rev. 06 |
|
|
|
|
|
Pb Auxiliaries/equipment not required according to Annex 4, Appendix 6 of UN/ECE Regulation 49 Rev. 06 |
|
|
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|
|
5.4. Fan constant determined in accordance with Appendix 5 to this Annex (if applicable)
Value |
Engine speed |
Engine speed |
Engine speed |
Engine speed |
Engine speed |
Engine speed |
Engine speed |
Engine speed |
Engine speed |
Engine speed |
1 |
2 |
3 |
4 |
5 |
6 |
7 |
8 |
9 |
10 |
|
engine speed [min– 1] |
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|
|
fan constant Cind-fan,i |
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|
|
6. Engine performance (declared by manufacturer)
6.1. Engine test speeds for emissions test according to Annex 4 of UN/ECE Regulation 49 Rev. 06 (1)
6.2. Declared values for power test according to Regulation No. 85
Appendix 3
Engine CO
2
-Family
1. Parameters defining the engine CO
2
-family
1.1. Combustion relevant geometric data
1.2. Air management relevant components
1.6. Aftertreatment system
1.7. Full load curve
1.8. Characteristic engine test speeds
1.9. Minimum number of points in the fuel consumption map
2. Choice of the CO
2
-parent engine
Appendix 4
Conformity of CO
2
emissions and fuel consumption related properties
1. General provisions
2. Number of engines and engine CO
2
-families to be tested
3. Selection of engine CO
2
-families to be tested
4. Testrun to be performed
5. Run-in of newly manufactured engines
6. Target value for assessment of conformity of the certified CO
2
emissions and fuel consumption related properties
7. Actual value for assessment of conformity of the certified CO
2
emissions and fuel consumption related properties
8. Limit for conformity of one single test
9. Assessment of conformity of the certified CO
2
emissions and fuel consumption related properties
Appendix 5
Determination of power consumption of engine components
1. Fan
2. Electric components/equipment
Appendix 6
1. Markings
1.4.1 Example and dimensions of the certification mark (separate marking)
1.5.1 Example of the certification mark (joined marking)
2 Numbering
section 1 |
section 2 |
section 3 |
Additional letter to section 3 |
section 4 |
section 5 |
Indication of country issuing the certification |
CO2 certification act (…/2017) |
Latest amending act (zzz/zzzz) |
E - engine |
Base certification number 0000 |
Extension 00 |
Appendix 7
Input parameters for the simulation tool
Introduction
Definitions
Set of input parameters
Parameter name |
Parameter ID |
Type |
Unit |
Description/Reference |
Manufacturer |
P200 |
token |
[-] |
|
Model |
P201 |
token |
[-] |
|
TechnicalReportId |
P202 |
token |
[-] |
|
Date |
P203 |
dateTime |
[-] |
Date and time when the component-hash is created |
AppVersion |
P204 |
token |
[-] |
Version number of engine pre-processing tool |
Displacement |
P061 |
int |
[cm3] |
|
IdlingSpeed |
P063 |
int |
[1/min] |
|
RatedSpeed |
P249 |
int |
[1/min] |
|
RatedPower |
P250 |
int |
[W] |
|
MaxEngineTorque |
P259 |
int |
[Nm] |
|
WHTCUrban |
P109 |
double, 4 |
[-] |
|
WHTCRural |
P110 |
double, 4 |
[-] |
|
WHTCMotorway |
P111 |
double, 4 |
[-] |
|
BFColdHot |
P159 |
double, 4 |
[-] |
|
CFRegPer |
P192 |
double, 4 |
[-] |
|
CFNCV |
P260 |
double, 4 |
[-] |
|
FuelType |
P193 |
string |
[-] |
Allowed values: ‘Diesel CI’, ‘Ethanol CI’, ‘Petrol PI’, ‘Ethanol PI’, ‘LPG’, ‘NG’ |
Parameter name |
Parameter ID |
Type |
Unit |
Description/Reference |
EngineSpeed |
P068 |
double, 2 |
[1/min] |
|
MaxTorque |
P069 |
double, 2 |
[Nm] |
|
DragTorque |
P070 |
double, 2 |
[Nm] |
|
Parameter name |
Parameter ID |
Type |
Unit |
Description/Reference |
EngineSpeed |
P072 |
double, 2 |
[1/min] |
|
Torque |
P073 |
double, 2 |
[Nm] |
|
FuelConsumption |
P074 |
double, 2 |
[g/h] |
|
Appendix 8
Important evaluation steps and equations of the engine pre-processing tool
1. Reading of input files and automatic check of input data
3. Processing of fuel consumption (FC) map
4. Simulation of FC and cycle work over WHTC and respective subparts for actual engine for certification
5. Calculation of WHTC correction factors
6. Calculation of cold-hot emission balancing factor
7. Correction of FC values in FC map to standard NCV
8. Converting of engine full load and motoring torque values of the actual engine for certification to a logging frequency of the engine speed of 8 min
– 1
ANNEX VI
VERIFYING TRANSMISSION, TORQUE CONVERTER, OTHER TORQUE TRANSFERRING COMPONENT AND ADDITIONAL DRIVELINE COMPONENT DATA
1. Introduction
2. Definitions
3. Testing procedure for transmissions
3.1.2.1. General requirements
3.1.2.2. Differential measurements
3.1.2.3. Run-in
3.1.2.4. Pre-conditioning
3.1.2.5. Test conditions
3.1.2.5.1. Ambient temperature
3.1.2.5.2. Oil temperature
3.1.2.5.3. Oil quality
3.1.2.5.4. Oil viscosity
3.1.2.5.5. Oil level and conditioning
3.1.3. Installation
3.1.4. Measurement equipment
3.1.4.1. Torque
3.1.4.2. Speed
3.1.4.3. Temperature
3.1.4.4. Pressure
3.1.4.5. Voltage
3.1.4.6. Electric current
3.1.5. Measurement signals and data recording
3.1.6. Test procedure
3.1.6.1. Zero torque signal compensation:
3.1.6.2. Speed range:
3.1.6.3. Measurement sequence:
3.1.7. Measurement validation
3.1.8. Measurement uncertainty
Figure 1
Test setup A for Option 1
Figure 2
Test setup B for Option 1
3.2. Option 2: Measurement of the torque independent losses, measurement of the torque loss at maximum torque and interpolation of the torque dependent losses based on a linear model
3.2.1.1. General requirements:
3.2.1.2. Differential measurements:
3.2.1.3. Run-in
3.2.1.4. Pre-conditioning
3.2.1.5. Test conditions
3.2.1.5.1. Ambient temperature
3.2.1.5.2. Oil temperature
3.2.1.5.3. Oil quality / Oil viscosity
3.2.1.5.4. Oil level and conditioning
3.2.2. Installation
3.2.3. Measurement equipment
3.2.4. Measurement signals and data recording
3.2.5. Test procedure
3.2.6. Measurement validation
3.2.7. Measurement uncertainty
3.3. Option 3: Measurement of the total torque loss.
3.3.1. General requirements
3.3.1.1 Differential measurements:
3.3.2. Run-in
3.3.2.1 Pre-conditioning
3.3.3. Test conditions
3.3.3.1. Ambient temperature
3.3.3.2. Oil temperature
3.3.3.3. Oil quality / Oil viscosity
3.3.3.4. Oil level and conditioning
3.3.4. Installation
3.3.5. Measurement equipment
3.3.6. Test procedure
3.3.6.1. Zero torque signal compensation:
3.3.6.2. Speed range
3.3.6.3. Torque range
3.3.6.4. Measurement sequence
3.3.7. Measurement signals and data recording
3.3.8. Measurement validation
3.3.9. Measurement uncertainty
Figure 3
Test setup A for Option 3
Figure 4
Test setup B for Option 3
3.4. Complement of input files for the simulation tool
4. Torque converter (TC)
v |
μ |
Tpum 1000 |
1,000 |
1,0000 |
0,00 |
1,100 |
0,9999 |
– 40,34 |
1,222 |
0,9998 |
– 80,34 |
1,375 |
0,9997 |
– 136,11 |
1,571 |
0,9996 |
– 216,52 |
1,833 |
0,9995 |
– 335,19 |
2,200 |
0,9994 |
– 528,77 |
2,500 |
0,9993 |
– 721,00 |
3,000 |
0,9992 |
– 1 122,00 |
3,500 |
0,9991 |
– 1 648,00 |
4,000 |
0,9990 |
– 2 326,00 |
4,500 |
0,9989 |
– 3 182,00 |
5,000 |
0,9988 |
– 4 242,00 |
4.1. Option A: Measured torque converter characteristics at constant speed
4.1.1. General requirements
4.1.2. Oil temperature
4.1.3. Oil flow rate and pressure
4.1.4. Oil quality/Oil viscosity
4.1.5. Installation
4.1.6. Measurement equipment
4.1.6.1. Torque
4.1.6.2. Speed
4.1.6.3. Temperature
4.1.7. Test procedure
4.1.7.1. Zero torque signal compensation
4.1.7.2. Measurement sequence
4.1.8. Measurement signals and data recording
4.1.9. Measurement validation
4.1.10. Measurement uncertainty
4.1.11. Calculation of TC characteristics
4.2. Option B: Measurement at constant input torque (in accordance with SAE J643)
4.2.1. General requirements
4.2.2. Oil temperature
4.2.3. Oil flow rate and pressure
4.2.4. Oil quality
4.2.5. Installation
4.2.6. Measurement equipment
4.2.7. Test procedure
4.2.7.1. Zero torque signal compensation
4.1.7.2. Measurement sequence
4.2.8. Measurement signals and data recording
4.2.9. Measurement validation
4.2.10. Measurement uncertainty
4.2.11. Calculation of TC characteristics
5. Other torque transferring components (OTTC)
5.1. Methods for establishing retarder drag losses
Configuration |
Speed reference |
Retarder rotor speed calculation |
||
|
Engine Speed |
nretarder = nengine * istep-up |
||
|
Transmission Input Shaft Speed |
nretarder = ntransm.input * istep-up = ntransm.output * itransm * istep-up |
||
|
Transmission Output Shaft Speed |
nretarder = ntransm.output * istep-up |
5.1.1. General requirements
5.1.2. Run-in
5.1.3. Test conditions
5.1.3.1. Ambient temperature
5.1.3.2. Ambient pressure
5.1.3.3. Oil or water temperature
5.1.3.4. Oil or water quality
5.1.3.5. Oil viscosity
5.1.3.6. Oil or water level
5.1.4. Installation
5.1.5. Measurement equipment
5.1.6. Test procedure
5.1.6.1. Zero torque signal compensation:
5.1.6.2. Measurement sequence
5.1.6.2.1. Measurement on the retarder as stand-alone unit
5.1.6.2.2. Measurement in combination with the transmission
5.1.6.2.2. The torque loss shall be measured at the operating speeds as indicated for the related transmission testing.
5.1.7. Measurement signals and data recording
5.1.8. Measurement validation
5.2. Complement of input files for the simulation tool
6. Additional driveline components (ADC) / angle drive
6.1. Methods for establishing angle drive losses
6.1.1. Case A: Measurement on a separate angle drive
6.1.1.1 Applicable speed range:
6.1.2. Case B: Individual measurement of an angle drive connected to a transmission
6.2. Complement of input files for the simulation tool
7. Conformity of the certified CO
2
emissions and fuel consumption related properties
Total annual production of transmissions |
Number of tests |
0 – 1 000 |
0 |
> 1 000 -10 000 |
1 |
> 10 000 -30 000 |
2 |
> 30 000 |
3 |
> 100 000 |
4 |
8. Production conformity testing
8.1 Conformity testing of transmissions
Appendix 1
MODEL OF A CERTIFICATE OF A COMPONENT, SEPARATE TECHNICAL UNIT OR SYSTEM
Maximum format: A4 (210 × 297 mm)
CERTIFICATE ON CO
2
EMISSIONS AND FUEL CONSUMPTION RELATED PROPERTIES OF A TRANSMISSON / TORQUE CONVERTER / OTHER TORQUE TRANSFERRING COMPONENT/ ADDITIONAL DRIVELINE COMPONENT
(1)
FAMILY
Communication concerning:
|
Administration stamp
|
SECTION I
SECTION II
1. Additional information (where applicable): see Addendum
1.1. Option used for the determination of the torque losses
Appendix 2
Transmission information document
Information document no.: |
Issue: Date of issue: Date of Amendment: |
0. GENERAL
PART 1
ESSENTIAL CHARACTERISTICS OF THE (PARENT) TRANSMISSION AND THE TRANSMISSION TYPES WITHIN A TRANSMISSION FAMILY
|
Parent transmission |
Family members |
|
||
|
|||||
or transmission type |
|
||||
|
|||||
|
#1 |
#2 |
#3 |
|
|
|
0.0 GENERAL
1.0 SPECIFIC TRANSMISSION/TRANSMISSION FAMILY INFORMATION
LIST OF ATTACHMENTS
No.: |
Description: |
Date of issue: |
1 |
Information on Transmission test conditions |
… |
2 |
… |
|
Attachment 1 to Transmission information document
Information on test conditions (if applicable)
|
yes/no |
||
|
yes/no |
||
|
|
||
|
|
Appendix 3
Hydrodynamic torque converter (TC) information document
Information document no.: |
Issue: Date of issue: Date of Amendment: |
0. GENERAL
PART 1
ESSENTIAL CHARACTERISTICS OF THE (PARENT) TC AND THE TC TYPES WITHIN A TC FAMILY
|
Parent TC or |
Family members |
|
||
|
|||||
TC type |
#1 |
#2 |
#3 |
|
|
|
|||||
|
|||||
|
|
|
|
|
|
0.0 GENERAL
1.0 SPECIFIC TORQUE CONVERTER/TORQUE CONVERTER FAMILY INFORMATION
LIST OF ATTACHMENTS
No.: |
Description: |
Date of issue: |
1 |
Information on Torque Converter test conditions |
… |
2 |
… |
|
Attachment 1 to Torque Converter information document
Information on test conditions (if applicable)
1. Method of measurement
Appendix 4
Other torque transferring components (OTTC) information document
Information document no.: |
Issue: Date of issue: Date of Amendment: |
0. GENERAL
PART 1
ESSENTIAL CHARACTERISTICS OF THE (PARENT) OTTC AND THE OTTC TYPES WITHIN AN OTTC FAMILY
|
Parent OTTC |
Family member |
|
||
|
|||||
|
#1 |
#2 |
#3 |
|
|
|
0.0 GENERAL
1.0 SPECIFIC OTTC INFORMATION
LIST OF ATTACHMENTS
No.: |
Description: |
Date of issue: |
1 |
Information on OTTC test conditions |
… |
2 |
… |
|
Attachment 1 to OTTC information document
Information on test conditions (if applicable)
1. Method of measurement
Appendix 5
Additional driveline components (ADC) information document
Information document no.: |
Issue: Date of issue: Date of Amendment: |
0. GENERAL
PART 1
ESSENTIAL CHARACTERISTICS OF THE (PARENT) ADC AND THE ADC TYPES WITHIN AN ADC FAMILY
|
Parent-ADC |
Family member |
|
||
|
|||||
|
#1 |
#2 |
#3 |
|
|
|
0.0 GENERAL
1.0 SPECIFIC ADC/ANGLE DRIVE INFORMATION
LIST OF ATTACHMENTS
No.: |
Description: |
Date of issue: |
1 |
Information on ADC test conditions |
… |
2 |
… |
|
Attachment 1 to ADC information document
Information on test conditions (if applicable)
1. Method of measurement
with transmission |
yes/no |
drive mechanism |
yes/no |
direct |
yes/no |
Appendix 6
Family Concept
1. General
1.1 Special cases
3. Parameters defining the transmission family
4. Choice of the parent transmission
5. Parameters defining the torque converter family
6. Choice of the parent torque converter
7. Parameters defining the other torque transferring components (OTTC) family
8. Choice of the parent torque transferring component
9. Parameters defining the additional driveline components family
10. Choice of the parent additional driveline component
Appendix 7
Markings and numbering
1. Markings
T |
Transmission |
C |
Torque Converter (TC) |
O |
Other torque transferring component (OTTC) |
D |
Additional driveline component (ADC) |
1.5 Example of the certification mark
2. Numbering
section 1 |
section 2 |
section 3 |
Additional letter to section 3 |
section 4 |
section 5 |
Indication of country issuing the certificate |
CO2 certification act (…/2017) |
Latest amending act (zzz/zzzz) |
See Table 1 of this appendix |
Base certification number 0000 |
Extension 00 |
Appendix 8
Standard torque loss values - Transmission
Appendix 9
Generic model – torque converter
Figure 1
Generic torque capacity
Figure 2
Generic torque ratio
Appendix 10
Standard torque loss values – other torque transferring components
Appendix 11
Standard torque loss values – geared angle drive
Appendix 12
Input parameters for the simulation tool
Introduction
Definitions
Set of input parameters
Parameter name |
Parameter ID |
Type |
Unit |
Description/Reference |
Manufacturer |
P205 |
token |
[-] |
|
Model |
P206 |
token |
[-] |
|
TechnicalReportId |
P207 |
token |
[-] |
|
Date |
P208 |
dateTime |
[-] |
Date and time when the component-hash is created |
AppVersion |
P209 |
token |
[-] |
|
TransmissionType |
P076 |
string |
[-] |
Allowed values: ‘SMT’, ‘AMT’, ‘APT-S’, ‘APT-P’ |
MainCertificationMethod |
P254 |
string |
[-] |
Allowed values: ‘Option 1’, ‘Option 2’, ‘Option 3’, ‘Standard values’ |
Parameter name |
Parameter ID |
Type |
Unit |
Description/Reference |
GearNumber |
P199 |
integer |
[-] |
|
Ratio |
P078 |
double, 3 |
[-] |
|
MaxTorque |
P157 |
integer |
[Nm] |
optional |
MaxSpeed |
P194 |
integer |
[1/min] |
optional |
Parameter name |
Parameter ID |
Type |
Unit |
Description/Reference |
InputSpeed |
P096 |
double, 2 |
[1/min] |
|
InputTorque |
P097 |
double, 2 |
[Nm] |
|
TorqueLoss |
P098 |
double, 2 |
[Nm] |
|
Parameter name |
Parameter ID |
Type |
Unit |
Description/Reference |
Manufacturer |
P210 |
token |
[-] |
|
Model |
P211 |
token |
[-] |
|
TechnicalReportId |
P212 |
token |
[-] |
|
Date |
P213 |
dateTime |
[-] |
Date and time when the component-hash is created |
AppVersion |
P214 |
string |
[-] |
|
CertificationMethod |
P257 |
string |
[-] |
Allowed values: ‘Measured’, ‘Standard values’ |
Parameter name |
Parameter ID |
Type |
Unit |
Description/Reference |
SpeedRatio |
P099 |
double, 4 |
[-] |
|
TorqueRatio |
P100 |
double, 4 |
[-] |
|
InputTorqueRef |
P101 |
double, 2 |
[Nm] |
|
Parameter name |
Parameter ID |
Type |
Unit |
Description/Reference |
Manufacturer |
P220 |
token |
[-] |
|
Model |
P221 |
token |
[-] |
|
TechnicalReportId |
P222 |
token |
[-] |
|
Date |
P223 |
dateTime |
[-] |
Date and time when the component-hash is created |
AppVersion |
P224 |
string |
[-] |
|
Ratio |
P176 |
double, 3 |
[-] |
|
CertificationMethod |
P258 |
string |
[-] |
Allowed values: ‘Option 1’, ‘Option 2’, ‘Option 3’, ‘Standard values’ |
Parameter name |
Parameter ID |
Type |
Unit |
Description/Reference |
InputSpeed |
P173 |
double, 2 |
[1/min] |
|
InputTorque |
P174 |
double, 2 |
[Nm] |
|
TorqueLoss |
P175 |
double, 2 |
[Nm] |
|
Parameter name |
Parameter ID |
Type |
Unit |
Description/Reference |
Manufacturer |
P225 |
token |
[-] |
|
Model |
P226 |
token |
[-] |
|
TechnicalReportId |
P227 |
token |
[-] |
|
Date |
P228 |
dateTime |
[-] |
Date and time when the component-hash is created |
AppVersion |
P229 |
string |
[-] |
|
CertificationMethod |
P255 |
string |
[-] |
Allowed values: ‘Measured’, ‘Standard values’ |
Parameter name |
Parameter ID |
Type |
Unit |
Description/Reference |
RetarderSpeed |
P057 |
double, 2 |
[1/min] |
|
TorqueLoss |
P058 |
double, 2 |
[Nm] |
|
ANNEX VII
VERIFYING AXLE DATA
1. Introduction
2. Definitions
3. General requirements
3.1 Run-in
4. Testing procedure for axles
4.1 Test conditions
4.1.1 Ambient temperature
4.1.2 Oil temperature
4.1.3 Oil quality
4.1.4 Oil viscosity
4.1.5 Oil level and conditioning
4.2 Test set-up
4.2.1 Axle installation
4.2.2 Installation of torque meters
4.2.3 Test set-up ‘Type A’
Figure 1
Example of Test set-up ‘Type A’
4.2.4 Test set-up ‘Type B’
4.3 Test procedure
4.3.1 Measurement equipment
4.3.1.1 Torque measurement
4.3.1.2 Rotational speed
4.3.1.3 Temperatures
4.3.2 Measurement signals and data recording
4.3.3 Torque range:
4.3.4 Speed range
4.3.5 Wheel speed steps to be measured
4.4 Measurement of torque loss maps for axles
4.4.1 Testing sequence of the torque loss map
4.4.2 Measurement duration
4.4.3 Averaging of grid points
4.4.5 Measurement validation
4.4.6 Uncertainty calculation
4.4.7 Assessment of total uncertainty of the torque loss
4.4.8 Complement of torque loss map data
5. Conformity of the certified CO
2
emissions and fuel consumption related properties
Production number |
Number of test for SR axles |
Number of tests for other axles than SR axles |
0 – 40 000 |
2 |
1 |
40 001 – 50 000 |
2 |
2 |
50 001 – 60 000 |
3 |
2 |
60 001 – 70 000 |
4 |
2 |
70 001 – 80 000 |
5 |
2 |
80 001 and more |
5 |
3 |
6. Production conformity testing
Figure 2
Speed and torque range for conformity of the certified CO
2
emissions and fuel consumption related properties testing
6.3 Determination of drag torque
6.4. Conformity of the certified CO
2
emissions and fuel consumption related properties test assessment
Axleline |
Tolerances for axles measured in CoP after run-in Comparison to Td0 |
Tolerances for axles measured in CoP without run in Comparison to Td0 |
||||||
for i |
tolerance Td0_input [Nm] |
for i |
tolerance Td0_input [Nm] |
for i |
tolerance Td0_input Nm] |
for i |
tolerance Td0_input [Nm] |
|
SR |
≤ 3 |
15 |
> 3 |
12 |
≤ 3 |
25 |
> 3 |
20 |
SRT |
≤ 3 |
16 |
> 3 |
13 |
≤ 3 |
27 |
> 3 |
21 |
SP |
≤ 6 |
11 |
> 6 |
10 |
≤ 6 |
18 |
> 6 |
16 |
HR |
≤ 7 |
10 |
> 7 |
9 |
≤ 7 |
16 |
> 7 |
15 |
HRT |
≤ 7 |
11 |
> 7 |
10 |
≤ 7 |
18 |
> 7 |
16 |
Appendix 1
MODEL OF A CERTIFICATE OF A COMPONENT, SEPARATE TECHNICAL UNIT OR SYSTEM
Maximum format: A4 (210 × 297 mm)
CERTIFICATE ON CO
2
EMISSIONS AND FUEL CONSUMPTION RELATED PROPERTIES OF AN AXLE FAMILY
Communication concerning:
|
Administration stamp
|
SECTION I
SECTION II
Appendix 2
Axle information document
Information document no.: |
Issue: Date of issue: Date of Amendment: |
0. GENERAL
PART 1
ESSENTIAL CHARACTERISTICS OF THE (PARENT) AXLE AND THE AXLE TYPES WITHIN AN AXLE FAMILY
|
Parent axle |
Family member |
|
||
|
|||||
or axle type |
#1 |
#2 |
#3 |
|
|
|
0.0 GENERAL
1.0 SPECIFIC AXLE INFORMATION
1.1 |
Axle line (SR, HR, SP, SRT, HRT) |
… |
|
… |
… |
… |
|
1.2 |
Axle gear ratio |
|
… |
|
… |
… |
… |
1.3 |
Axle housing (number/ID/drawing) |
|
… |
|
… |
… |
… |
1.4 |
Gear specifications |
… |
|
… |
… |
|
|
1.4.1 |
Crown wheel diameter; [mm] |
|
… |
|
… |
|
|
1.4.2 |
Vertical offset pinion/crown wheel; [mm] |
… |
|
|
|
|
|
LIST OF ATTACHMENTS
No.: |
Description: |
Date of issue: |
1 |
… |
… |
2 |
… |
|
Appendix 3
Calculation of the standard torque loss
Basic function |
Generic efficiency η |
Drag torque (wheel side) Td0 = T0 + T1 * igear |
Single reduction axle (SR) |
0,98 |
T0 = 70 Nm T1 = 20 Nm |
Single reduction tandem axle (SRT) / single portal axle (SP) |
0,96 |
T0 = 80 Nm T1 = 20 Nm |
Hub reduction axle (HR) |
0,97 |
T0 = 70 Nm T1 = 20 Nm |
Hub reduction tandem axle (HRT) |
0,95 |
T0 = 90 Nm T1 = 20 Nm |
Appendix 4
Family Concept
2. Special cases
3. Parameters defining an axle family:
3.1 Axle category
4. Choice of the parent axle:
Appendix 5
Markings and numbering
1. Markings
1.4.1 Example and dimensions of the certification mark
2. Numbering:
Section 1 |
Section 2 |
Section 3 |
Additional letter to section 3 |
Section 4 |
Section 5 |
Indication of country issuing the certificate |
CO2 certification act (…/2017) |
Latest amending act (zzz/zzzz) |
L = Axle |
Base certification number 0000 |
Extension 00 |
Appendix 6
Input parameters for the simulation tool
Introduction
Definitions
Set of input parameters
Parameter name |
Param ID |
Type |
Unit |
Description/Reference |
Manufacturer |
P215 |
token |
[-] |
|
Model |
P216 |
token |
[-] |
|
TechnicalReportId |
P217 |
token |
[-] |
|
Date |
P218 |
dateTime |
[-] |
Date and time when the component-hash is created |
AppVersion |
P219 |
token |
[-] |
|
LineType |
P253 |
string |
[-] |
Allowed values: ‘Single reduction axle’, ‘Single portal axle’, ‘Hub reduction axle’, ‘Single reduction tandem axle’, ‘Hub reduction tandem axle’ |
Ratio |
P150 |
double, 3 |
[-] |
|
CertificationMethod |
P256 |
string |
[-] |
Allowed values: ‘Measured’, ‘Standard values’ |
Parameter name |
Param ID |
Type |
Unit |
Description/Reference |
InputSpeed |
P151 |
double, 2 |
[1/min] |
|
InputTorque |
P152 |
double, 2 |
[Nm] |
|
TorqueLoss |
P153 |
double, 2 |
[Nm] |
|
ANNEX VIII
VERIFYING AIR DRAG DATA
1. Introduction
2. Definitions
3. Determination of air drag
3.1. Test track requirements
3.1.2. Measurement sections
3.1.3. Measurement areas
3.1.4. Shape of the measurement sections
3.1.5. Longitudinal slope of the measurement sections
3.1.6. Track surface
3.1.7. Standstill area
3.1.8. Distance to roadside obstacles and vertical clearance
3.1.9. Altitude profile
3.2. Requirements for ambient conditions
3.3. Installation of the vehicle
3.4. Measurement equipment
3.4.1. Torque
3.4.2. Vehicle speed
3.4.3. Reference signal for calculation of rotational speed of the wheels at the driven axle
3.4.4. Opto-electronic barriers
3.4.5. (D)GPS system
Option a) for position measurement only: GPS
Option b) for vehicle speed calibration and position measurement: Differential GPS system (DGPS)
3.4.6. Stationary weather station
3.4.7. Mobile anemometer
3.4.7.1. Accuracy requirements
Air speed range [m/s] |
Accuracy air speed [m/s] |
Accuracy yaw angle in yaw angle range of 180 ± 7 degrees [degrees] |
20 ± 1 |
± 0,7 |
± 1,0 |
27 ± 1 |
± 0,9 |
± 1,0 |
35 ± 1 |
± 1,2 |
± 1,0 |
3.4.7.2. Installation position
3.4.8. Temperature transducer for ambient temperature on vehicle
3.4.9. Proving ground temperature
3.5. Constant speed test procedure
3.5.3.1. Preparation of vehicle and measurement systems
3.5.3.2. Warm-up phase
3.5.3.3. Zeroing of torque meters
3.5.3.5. First low speed test
3.5.3.7. High speed test
3.5.3.8. Second low speed test
3.5.3.9. Drift check of torque meters
3.6. Misalignment calibration test
3.7. Testing Template
3.8. Data processing
3.9. Input data for Vehicle Energy Consumption calculation Tool Air Drag tool
Input data |
Unit |
Remarks |
Vehicle group code |
[-] |
1 - 17 for trucks |
Vehicle configuration with trailer |
[-] |
if the vehicle was measured without trailer (input ‘No’) or with trailer i.e. as a truck/trailer or tractor semitrailer combination (input ‘Yes’) |
Vehicle test mass |
[kg] |
actual mass during measurements |
Gross vehicle mass |
[kg] |
gross vehicle mass of the rigid or tractor (w/o trailer or semitrailer) |
Axle ratio |
[-] |
axle transmission ratio(1) (2) |
Gear ratio high speed |
[-] |
transmission ratio of gear engaged during high speed test(1) |
Gear ratio low speed |
[-] |
transmission ratio of gear engaged during low speed test(1) |
Anemometer height |
[m] |
height above ground of the measurement point of installed anemometer |
Vehicle height |
[m] |
maximum vehicle height according to 3.5.3.1 item vii. |
Gear box type |
[-] |
manual or automated transmission: ‘MT_AMT’ automatic transmission with torque converter: ‘AT’ |
Vehicle maximum speed |
[km/h] |
maximum speed the vehicle can be practically operated at the test track(3) |
Signal |
Column identifier in input file |
Unit |
Measurement rate |
Remarks |
Time |
|
[s] since day start (first day) |
— |
— |
Ambient temperature |
|
[°C] |
At least 1 averaged value per 6 minutes |
Stationary weather station |
Ambient pressure |
|
[mbar] |
Stationary weather station |
|
Relative air humidity |
|
[%] |
Stationary weather station |
Input data |
Unit |
Remarks |
Trigger signal used |
[-] |
1 = trigger signal used; 0 = no trigger signal used |
Measurement section ID |
[-] |
user defined ID number |
Driving direction ID |
[-] |
user defined ID number |
Heading |
[°] |
heading of the measurement section |
Length of the measurement section |
[m] |
— |
Latitude start point of section |
decimal degrees or decimal minutes |
standard GPS, unit decimal degrees: minimum 5 digits after decimal separator |
Longitude start point of section |
standard GPS, unit decimal minutes: minimum 3 digits after decimal separator |
|
Latitude end point of section |
DGPS, unit decimal degrees: minimum 7 digits after decimal separator |
|
Longitude end point of section |
DGPS, unit decimal minutes: minimum 5 digits after decimal separator |
|
Path and/or filename of altitude file |
[-] |
only required for the constant speed tests (not the misalignment test) and if the altitude correction is enabled. |
Signal |
Column identifier in input file |
Unit |
Measurement rate |
Remarks |
Time |
|
[s] since day start (of first day) |
100 Hz |
rate fixed to 100 Hz; time signal used for correlation with weather data and for check of frequency |
(D)GPS latitude |
|
decimal degrees or decimal minutes |
GPS: ≥ 4 Hz DGPS: ≥ 100 Hz |
standard GPS, unit decimal degrees: minimum 5 digits after decimal separator |
(D)GPS longitude |
|
standard GPS, unit decimal minutes: minimum 3 digits after decimal separator DGPS, unit decimal degrees: minimum 7 digits after decimal separator DGPS, unit decimal minutes: minimum 5 digits after decimal separator |
||
(D)GPS heading |
|
[°] |
≥ 4Hz |
|
DGPS velocity |
|
[km/h] |
≥ 20 Hz |
|
Vehicle velocity |
|
[km/h] |
≥ 20 Hz |
raw CAN bus front axle signal |
Air speed |
|
[m/s] |
≥ 4 Hz |
raw data (instrument reading) |
Inflow angle (beta) |
|
[°] |
≥ 4 Hz |
raw data (instrument reading); ‘180°’ refers to air flow from front |
Engine speed or cardan speed |
|
[rpm] |
≥ 20 Hz |
cardan speed for vehicles with torque converter not locked during low speed test |
Torque meter (left wheel) |
|
[Nm] |
≥ 20 Hz |
— |
Torque meter (right wheel) |
|
[Nm] |
≥ 20 Hz |
|
Ambient temperature on vehicle |
|
[°C] |
≥ 1 Hz |
|
Trigger signal |
|
[-] |
100 Hz |
optional signal; required if measurement sections are identified by opto electronic barriers (option ‘trigger_used=1’) |
Proving ground temperature |
|
[°C] |
≥ 1 Hz |
|
Validity |
|
[-] |
— |
optional signal (1=valid; 0=invalid); |
Input data |
Unit |
Remarks |
Latitude |
decimal degrees or decimal minutes |
unit decimal degrees: minimum 7 digits after decimal separator |
Longitude |
unit decimal minutes: minimum 5 digits after decimal separator |
|
Altitude |
[m] |
minimum 2 digits after decimal separator |
3.10. Validity criteria
3.10.1. Validity criteria for the constant speed test
3.10.2. Validity criteria for the misalignment test
3.11. Declaration of air drag value
Appendix 1
MODEL OF A CERTIFICATE OF A COMPONENT, SEPARATE TECHNICAL UNIT OR SYSTEM
Maximum format: A4 (210 × 297 mm)
CERTIFICATE ON CO
2
EMISSIONS AND FUEL CONSUMPTION RELATED PROPERTIES OF AN AIR DRAG FAMILY
Communication concerning:
|
Administration stamp
|
SECTION I
SECTION II
Appendix 2
Vehicle body and air drag information document
Description sheet no.: |
Issue: from: Amendment: |
pursuant to …
Vehicle Body and Air Drag type or family (if applicable):
0.0. GENERAL
PART 1
ESSENTIAL CHARACTERISTICS OF THE (PARENT) VEHICLE MODY AND AIR DRAG
Types within a vehicle body and air drag family
Parent vehicle configuration |
||
1.0. |
SPECIFIC AIR DRAG INFORMATION |
|
1.1.0 |
VEHICLE |
|
1.1.1 |
HDV group according to HDV CO2 scheme |
|
1.2.0. |
Vehicle Model |
|
1.2.1. |
Axle configuration |
|
1.2.2. |
Max. gross vehicle weight |
|
1.2.3. |
Cabin line |
|
1.2.4. |
Cabin width (max. value in Y direction) |
|
1.2.5. |
Cabin length (max. value in X direction) |
|
1.2.6. |
Roof height |
|
1.2.7. |
Wheel base |
|
1.2.8. |
Height cabin over frame |
|
1.2.9. |
Frame height |
|
1.2.10. |
Aerodynamic accessories or add-ons (e.g. roof spoiler, side extender, side skirts, corner vanes) |
|
1.2.11. |
Tire dimensions front axle |
|
1.2.12. |
Tire dimensions driven axles(s) |
|
1.3. |
Body specifications (according to standard body definition) |
|
1.4. |
(Semi-) Trailer specifications (according to (semi-) trailer specification by standard body) |
|
1.5. |
Parameter defining the family in accordance with the description of the applicant (parent criteria and deviated family criteria) |
|
LIST OF ATTACHMENTS
No. |
Description |
Date of issue |
1 |
Information on test conditions |
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
Attachment 1 to Information Document
Appendix 3
Vehicle height requirements
Vehicle group |
Minimum vehicle height [m] |
Maximum vehicle height [m] |
1 |
3,40 |
3,60 |
2 |
3,50 |
3,75 |
3 |
3,70 |
3,90 |
4 |
3,85 |
4,00 |
5 |
3,90 |
4,00 |
9 |
similar values as for rigid with same maximum gross vehicle weight (group 1, 2, 3 or 4) |
|
10 |
3,90 |
4,00 |
Appendix 4
Standard body and semitrailer configurations
Vehicle group |
Standard body or trailer |
||||||||
1 |
B1 |
||||||||
2 |
B2 |
||||||||
3 |
B3 |
||||||||
4 |
B4 |
||||||||
5 |
ST1 |
||||||||
9 |
depending on maximum gross vehicle weight:
|
||||||||
10 |
ST1 |
Specification |
Unit |
External dimension (tolerance) |
Remarks |
Length |
[mm] |
6 200 |
|
Width |
[mm] |
2 550 (– 10) |
|
Height |
[mm] |
2 680 (± 10) |
box: external height: 2 560 longitudinal beam: 120 |
Corner radius side & roof with front panel |
[mm] |
50 - 80 |
|
Corner radius side with roof panel |
[mm] |
50 - 80 |
|
Remaining corners |
[mm] |
broken with radius ≤ 10 |
|
Mass |
[kg] |
1 600 |
has not be verified during air drag testing |
Specification |
Unit |
External dimension (tolerance) |
Remarks |
Length |
[mm] |
7 400 |
|
Width |
[mm] |
2 550 (– 10) |
|
Height |
[mm] |
2 760 (± 10) |
box: external height: 2 640 longitudinal beam: 120 |
Corner radius side & roof with front panel |
[mm] |
50 - 80 |
|
Corner radius side with roof panel |
[mm] |
50 - 80 |
|
Remaining corners |
[mm] |
broken with radius ≤ 10 |
|
Mass |
[kg] |
1 900 |
has not be verified during air drag testing |
Specification |
Unit |
External dimension (tolerance) |
Remarks |
Length |
[mm] |
7 450 |
|
Width |
[mm] |
2 550 (– 10) |
legal limit (96/53/EC), internal ≥ 2 480 |
Height |
[mm] |
2 880 (± 10) |
box: external height: 2 760 longitudinal beam: 120 |
Corner radius side & roof with front panel |
[mm] |
50 - 80 |
|
Corner radius side with roof panel |
[mm] |
50 - 80 |
|
Remaining corners |
[mm] |
broken with radius ≤ 10 |
|
Mass |
[kg] |
2 000 |
has not be verified during air drag testing |
Specification |
Unit |
External dimension (tolerance) |
Remarks |
Length |
[mm] |
7 450 |
|
Width |
[mm] |
2 550 (– 10) |
|
Height |
[mm] |
2 980 (± 10) |
box: external height: 2 860 longitudinal beam: 120 |
Corner radius side & roof with front panel |
[mm] |
50 - 80 |
|
Corner radius side with roof panel |
[mm] |
50 - 80 |
|
Remaining corners |
[mm] |
broken with radius ≤ 10 |
|
Mass |
[kg] |
2 100 |
has not be verified during air drag testing |
Specification |
Unit |
External dimension (tolerance) |
Remarks |
Length |
[mm] |
7 820 |
internal ≥ 7 650 |
Width |
[mm] |
2 550 (– 10) |
legal limit (96/53/EC), internal ≥ 2 460 |
Height |
[mm] |
2 980 (± 10) |
box: external height: 2 860 longitudinal beam: 120 |
Corner radius side & roof with front panel |
[mm] |
50 - 80 |
|
Corner radius side with roof panel |
[mm] |
50 - 80 |
|
Remaining corners |
[mm] |
broken with radius ≤ 10 |
|
Mass |
[kg] |
2 200 |
has not be verified during air drag testing |
Type of trailer |
3-axle semi-trailer w/o steering axle(s) |
||||||||||||||||||||||||||||||||||
Chassis configuration |
|
Specification |
Unit |
External dimension (tolerance) |
Remarks |
Total length |
[mm] |
13 685 |
|
Total width (Body width) |
[mm] |
2 550 (– 10) |
|
Body height |
[mm] |
2 850 (± 10) |
max. full height: 4 000 (96/53/EC) |
Full height, unloaded |
[mm] |
4 000 (– 10) |
height over the complete length specification for semi-trailer, not relevant for checking of vehicle height during constant speed test |
Trailer coupling height, unloaded |
[mm] |
1 150 |
specification for semitrailer, not subject to inspection during constant speed test |
Wheelbase |
[mm] |
7 700 |
|
Axle distance |
[mm] |
1 310 |
3-axle assembly, 24t (96/53/EC) |
Front overhang |
[mm] |
1 685 |
radius: 2 040 (legal limit, 96/53/EC) |
Front wall |
|
|
flat wall with attachments for compressed air and electricity |
Corner front/side panel |
[mm] |
broken with a strip and edge radii ≤ 5 |
secant of a circle with the kingpin as centre and a radius of 2 040 (legal limit, 96/53/EC) |
Remaining corners |
[mm] |
broken with radius ≤ 10 |
|
Toolbox dimension vehicle x-axis |
[mm] |
655 |
Tolerance: ± 10 % of target value |
Toolbox dimension vehicle y-axis |
[mm] |
445 |
Tolerance: ± 5 % of target value |
Toolbox dimension vehicle z-axis |
[mm] |
495 |
Tolerance: ± 5 % of target value |
Side underride protection length |
[mm] |
3 045 |
2 stripes at each side, acc. ECE- R 73, Amendment 01 (2010), +/– 100 depending on wheelbase |
Stripe profile |
[mm2] |
100 × 30 |
ECE- R 73, Amendment 01 (2010) |
Technical gross vehicle weight |
[kg] |
39 000 |
legal GVWR: 24 000 (96/53/EC) |
Vehicle curb weight |
[kg] |
7 500 |
has not be verified during air drag testing |
Allowable axle load |
[kg] |
24 000 |
legal limit (96/53/EC) |
Technical axle load |
[kg] |
27 000 |
3 × 9 000 |
Appendix 5
Air drag family for trucks
1. General
2. Special cases
4. Parameter defining the air drag family:
Figure 1
Family definition
5. Choice of the air drag parent vehicle
Vehicle group |
Transfer formula |
Remarks |
1 |
Vehicle group 2 – 0,2 m2 |
Only allowed if value for related family in group 2 was measured |
2 |
Vehicle group 3 – 0,2 m2 |
Only allowed if value for related family in group 3 was measured |
3 |
Vehicle group 4 – 0,2 m2 |
|
4 |
No transfer allowed |
|
5 |
No transfer allowed |
|
9 |
Vehicle group 1,2,3,4 + 0,1 m2 |
Applicable group for transfer has to match with gross vehicle weight. Transfer of already transferred values allowed. |
10 |
Vehicle group 1,2,3,5 + 0,1 m2 |
|
11 |
Vehicle group 9 |
Transfer of already transferred values allowed |
12 |
Vehicle group 10 |
Transfer of already transferred values allowed |
16 |
No transfer allowed |
Only table value applicable |
Appendix 6
Conformity of the certified CO
2
emissions and fuel consumption related properties
Number of CoP tested vehicles |
Number of CoP relevant vehicles produced the year before |
2 |
≤ 25 000 |
3 |
≤ 50 000 |
4 |
≤ 75 000 |
5 |
≤ 100 000 |
6 |
100 001 and more |
Appendix 7
Standard values
Vehicle group |
Standard value Cd · Adeclared [m2] |
1 |
7,1 |
2 |
7,2 |
3 |
7,4 |
4 |
8,4 |
5 |
8,7 |
9 |
8,5 |
10 |
8,8 |
11 |
8,5 |
12 |
8,8 |
16 |
9,0 |
Trailer |
Standard delta air drag values for trailer influence [m2] |
T1 |
1,3 |
T2 |
1,5 |
EMS configuration |
Standard delta air drag values for EMS influence [m2] |
(Class 5 tractor + ST1) + T2 |
1,5 |
(Class 9/11 truck) + dolly + ST 1 |
2,1 |
(Class 10/12 tractor + ST1) + T2 |
1,5 |
Appendix 8
Markings
1.4.1 Example and dimensions of the certification mark
2 Numbering
Section 1 |
Section 2 |
Section 3 |
Additional letter to section 3 |
Section 4 |
Section 5 |
Indication of country issuing the certificate |
CO2 certification act (…/2017) |
Latest amending act (zzz/zzzz) |
P = Air drag |
Base certification number 0000 |
Extension 00 |
Appendix 9
Input parameters for the vehicle energy consumption calculation tool
Introduction
Definitions
Set of input parameters
Parameter name |
Param ID |
Type |
Unit |
Description/Reference |
Manufacturer |
P240 |
token |
|
|
Model |
P241 |
token |
|
|
TechnicalReportId |
P242 |
token |
|
Identifier of the component as used in the certification process |
Date |
P243 |
date |
|
Date and time when the component hash is created. |
AppVersion |
P244 |
token |
|
Number identifying the version of the air drag pre-processing tool |
CdxA_0 |
P245 |
double, 2 |
[m2] |
Final result of the air drag pre-processing tool. |
TransferredCdxA |
P246 |
double, 2 |
[m2] |
CdxA_0 transferred to related families in other vehicle groups according to Table 18 of Appendix 5. In case no transfer rule was applied CdxA_0 shall be provided. |
DeclaredCdxA |
P146 |
double, 2 |
[m2] |
Declared value for air drag family |
ANNEX IX
VERIFYING TRUCK AUXILIARY DATA
1. Introduction
2. Definitions
3. Determination of technology specific average standard power values
3.1 Fan
Fan drive cluster |
Fan control |
Fan power consumption [W] |
||||
Long haul |
Regional delivery |
Urban delivery |
Municipal utility |
Construction |
||
Crankshaft mounted |
Electronically controlled visco clutch |
618 |
671 |
516 |
566 |
1 037 |
Bimetallic controlled visco clutch |
818 |
871 |
676 |
766 |
1 277 |
|
Discrete step clutch |
668 |
721 |
616 |
616 |
1 157 |
|
On/off cluch |
718 |
771 |
666 |
666 |
1 237 |
|
Belt driven or driven via transmission |
Electronic controlled visco clutch |
989 |
1 044 |
833 |
933 |
1 478 |
Bimetallic controlled visco clutch |
1 189 |
1 244 |
993 |
1 133 |
1 718 |
|
Discrete step clutch |
1 039 |
1 094 |
983 |
983 |
1 598 |
|
On/off cluch |
1 089 |
1 144 |
1 033 |
1 033 |
1 678 |
|
Hydraulically driven |
Variable displacement pump |
938 |
1 155 |
832 |
917 |
1 872 |
Constant displacement pump |
1 200 |
1 400 |
1 000 |
1 100 |
2 300 |
|
Electrically driven |
Electronically |
700 |
800 |
600 |
600 |
1 400 |
3.2 Steering System
Identification of vehicle configuration |
|
Steering power consumption P [W] |
|||||||||||||||||
Number of axles |
Axle configuration |
Chassis configuration |
Technically permissible maximum laden mass (tons) |
Vehicle class |
Long haul |
Regional delivery |
Urban delivery |
Municipal utility |
Construction |
||||||||||
U+F |
B |
S |
U+F |
B |
S |
U+F |
B |
S |
U+F |
B |
S |
U+F |
B |
S |
|||||
2 |
4 × 2 |
Rigid + (Tractor) |
7,5 t - 10 t |
1 |
|
|
|
240 |
20 |
20 |
220 |
20 |
30 |
|
|
|
|
|
|
|
Rigid + (Tractor) |
> 10 t - 12 t |
2 |
340 |
30 |
0 |
290 |
30 |
20 |
260 |
20 |
30 |
|
|
|
|
|
|
|
|
Rigid + (Tractor) |
> 12 t - 16 t |
3 |
|
|
|
310 |
30 |
30 |
280 |
30 |
40 |
|
|
|
|
|
|
|
|
Rigid |
> 16 t |
4 |
510 |
100 |
0 |
490 |
40 |
40 |
|
|
|
430 |
30 |
50 |
|
|
|
|
|
Tractor |
> 16 t |
5 |
600 |
120 |
0 |
540 |
90 |
40 |
480 |
80 |
60 |
|
|
|
|
|
|
|
4 × 4 |
Rigid |
7,5 - 16 t |
6 |
— |
|||||||||||||||
|
Rigid |
> 16 t |
7 |
— |
|||||||||||||||
|
Tractor |
> 16 t |
8 |
— |
|||||||||||||||
3 |
6 × 2/2-4 |
Rigid |
all |
9 |
600 |
120 |
0 |
490 |
60 |
40 |
|
|
|
430 |
30 |
50 |
|
|
|
|
Tractor |
all |
10 |
450 |
120 |
0 |
440 |
90 |
40 |
|
|
|
|
|
|
|
|
|
|
6 × 4 |
Rigid |
all |
11 |
600 |
120 |
0 |
490 |
60 |
40 |
|
|
|
430 |
30 |
50 |
640 |
50 |
80 |
|
|
Tractor |
all |
12 |
450 |
120 |
0 |
440 |
90 |
40 |
|
|
|
|
|
|
640 |
50 |
80 |
|
6 × 6 |
Rigid |
all |
13 |
— |
|||||||||||||||
|
Tractor |
all |
14 |
||||||||||||||||
4 |
8 × 2 |
Rigid |
all |
15 |
— |
||||||||||||||
8 × 4 |
Rigid |
all |
16 |
|
|
|
|
|
|
|
|
|
|
|
|
640 |
50 |
80 |
|
8 × 6/8 × 8 |
Rigid |
all |
17 |
— |
|
Factor c1 depending on technology |
||
Technology |
c1,U + F |
c1,B |
c1,S |
Fixed displacement |
1 |
1 |
1 |
Fixed displacement with electronical control |
0,95 |
1 |
1 |
Dual displacement |
0,85 |
0,85 |
0,85 |
Variable displacement, mech. controlled |
0,75 |
0,75 |
0,75 |
Variable displacement, elec. controlled |
0,6 |
0,6 |
0,6 |
Electric |
0 |
1,5/ηalt |
1/ηalt |
|
Factor c2 depending on number of steered axles |
||||||||||||||
Number of steered axles |
Long haul |
Regional delivery |
Urban delivery |
Municipal utility |
Construction |
||||||||||
c2,U+F |
c2,B |
c2,S |
c2,U+F |
c2,B |
c2,S |
c2,U+F |
c2,B |
c2,S |
c2,U+F |
c2,B |
c2,S |
c2,U+F |
c2,B |
c2,S |
|
1 |
1 |
1 |
1 |
1 |
1 |
1 |
1 |
1 |
1 |
1 |
1 |
1 |
1 |
1 |
1 |
2 |
1 |
0,7 |
0,7 |
1,0 |
0,7 |
0,7 |
1,0 |
0,7 |
0,7 |
1,0 |
0,7 |
0,7 |
1,0 |
0,7 |
0,7 |
3 |
1 |
0,5 |
0,5 |
1,0 |
0,5 |
0,5 |
1,0 |
0,5 |
0,5 |
1,0 |
0,5 |
0,5 |
1,0 |
0,5 |
0,5 |
4 |
1,0 |
0,5 |
0,5 |
1,0 |
0,5 |
0,5 |
1,0 |
0,5 |
0,5 |
1,0 |
0,5 |
0,5 |
1,0 |
0,5 |
0,5 |
3.3 Electric system
Technologies influencing electric power consumption |
Electric power consumption [W] |
||||
Long haul |
Regional delivery |
Urban delivery |
Municipal utility |
Construction |
|
Standard technology electric power [W] |
1 200 |
1 000 |
1 000 |
1 000 |
1 000 |
LED main front headlights |
– 50 |
– 50 |
– 50 |
– 50 |
– 50 |
Alternator (power conversion) technologies Generic efficiency values for specific technologies |
Efficiency ηalt |
||||
Long haul |
Regional delivery |
Urban delivery |
Municipal utility |
Construction |
|
Standard alternator |
0,7 |
0,7 |
0,7 |
0,7 |
0,7 |
3.4 Pneumatic system
Size of air supply |
Technology |
Long Haul |
Regional Delivery |
Urban Delivery |
Municipal Utility |
Construction |
Pmean |
Pmean |
Pmean |
Pmean |
Pmean |
||
[W] |
[W] |
[W] |
[W] |
[W] |
||
small displ. ≤ 250 cm3 1 cyl./2 cyl. |
Baseline |
1 400 |
1 300 |
1 200 |
1 200 |
1 300 |
+ ESS |
– 500 |
– 500 |
– 400 |
– 400 |
– 500 |
|
+ visco clutch |
– 600 |
– 600 |
– 500 |
– 500 |
– 600 |
|
+ mech. clutch |
– 800 |
– 700 |
– 550 |
– 550 |
– 700 |
|
+ AMS |
– 400 |
– 400 |
– 300 |
– 300 |
– 400 |
|
medium 250 cm3 < displ. ≤ 500 cm3 1 cyl./2 cyl. 1-stage |
Baseline |
1 600 |
1 400 |
1 350 |
1 350 |
1 500 |
+ ESS |
– 600 |
– 500 |
– 450 |
– 450 |
– 600 |
|
+ visco clutch |
– 750 |
– 600 |
– 550 |
– 550 |
– 750 |
|
+ mech. clutch |
– 1 000 |
– 850 |
– 800 |
– 800 |
– 900 |
|
+ AMS |
– 400 |
– 200 |
– 200 |
– 200 |
– 400 |
|
medium 250 cm3 < displ. ≤ 500 cm3 1 cyl./2 cyl. 2-stage |
Baseline |
2 100 |
1 750 |
1 700 |
1 700 |
2 100 |
+ ESS |
– 1 000 |
– 700 |
– 700 |
– 700 |
– 1 100 |
|
+ visco clutch |
– 1 100 |
– 900 |
– 900 |
– 900 |
– 1 200 |
|
+ mech. clutch |
– 1 400 |
– 1 100 |
– 1 100 |
– 1 100 |
– 1 300 |
|
+ AMS |
– 400 |
– 200 |
– 200 |
– 200 |
– 500 |
|
large displ. > 500 cm3 1 cyl./2 cyl. 1-stage/2-stage |
Baseline |
4 300 |
3 600 |
3 500 |
3 500 |
4 100 |
+ ESS |
– 2 700 |
– 2 300 |
– 2 300 |
– 2 300 |
– 2 600 |
|
+ visco clutch |
– 3 000 |
– 2 500 |
– 2 500 |
– 2 500 |
– 2 900 |
|
+ mech. clutch |
– 3 500 |
– 2 800 |
– 2 800 |
– 2 800 |
– 3 200 |
|
+ AMS |
– 500 |
– 300 |
– 200 |
– 200 |
– 500 |
|
Long Haul |
Regional Delivery |
Urban Delivery |
Municipal Utility |
Construction |
Pmean |
Pmean |
Pmean |
Pmean |
Pmean |
|
[W] |
[W] |
[W] |
[W] |
[W] |
|
Vacuum pump |
190 |
160 |
130 |
130 |
130 |
3.5 Air Conditioning system
Identification of vehicle configuration |
|
AC power consumption [W] |
|||||||
Number of axles |
Axle configuration |
Chassis configuration |
Technically permissible maximum laden mass (tons) |
Vehicle class |
Long haul |
Regional delivery |
Urban delivery |
Municipal utility |
Construction |
2 |
4×2 |
Rigid + (Tractor) |
7,5 t - 10 t |
1 |
|
150 |
150 |
|
|
|
Rigid + (Tractor) |
> 10 t - 12 t |
2 |
200 |
200 |
150 |
|
|
|
|
Rigid + (Tractor) |
> 12 t - 16 t |
3 |
|
200 |
150 |
|
|
|
|
Rigid |
> 16 t |
4 |
350 |
200 |
|
300 |
|
|
|
Tractor |
> 16 t |
5 |
350 |
200 |
|
|
|
|
4×4 |
Rigid |
7,5 - 16 t |
6 |
— |
|||||
|
Rigid |
> 16 t |
7 |
— |
|||||
|
Tractor |
> 16 t |
8 |
— |
|||||
3 |
6×2/2-4 |
Rigid |
all |
9 |
350 |
200 |
|
300 |
|
|
Tractor |
all |
10 |
350 |
200 |
|
|
|
|
6×4 |
Rigid |
all |
11 |
350 |
200 |
|
300 |
200 |
|
|
Tractor |
all |
12 |
350 |
200 |
|
|
200 |
|
6×6 |
Rigid |
all |
13 |
— |
|||||
|
Tractor |
all |
14 |
||||||
4 |
8×2 |
Rigid |
all |
15 |
— |
||||
8×4 |
Rigid |
all |
16 |
|
|
|
|
200 |
|
8×6/8×8 |
Rigid |
all |
17 |
— |
3.6 Transmission Power Take-Off (PTO)
Design variants regarding power losses (in comparison to a transmission without PTO and / or PTO drive mechanism) |
|
|
|
Additional drag loss relevant parts |
PTO incl. drive mechanism |
only PTO drive mechanism |
|
Shafts / gear wheels |
Other elements |
Power loss [W] |
Power loss [W] |
only one engaged gearwheel positioned above the specified oil level (no additional gearmesh) |
— |
— |
0 |
only the drive shaft of the PTO |
tooth clutch (incl. synchroniser) or sliding gearwheel |
50 |
50 |
only the drive shaft of the PTO |
multi-disc clutch |
1 000 |
1 000 |
only the drive shaft of the PTO |
multi-disc clutch and oil pump |
2 000 |
2 000 |
drive shaft and/or up to 2 engaged gearwheels |
tooth clutch (incl. synchroniser) or sliding gearwheel |
300 |
300 |
drive shaft and/or up to 2 engaged gearwheels |
multi-disc clutch |
1 500 |
1 500 |
drive shaft and/or up to 2 engaged gearwheels |
multi-disc clutch and oil pump |
3 000 |
3 000 |
drive shaft and/or more than 2 engaged gearwheels |
tooth clutch (incl. synchroniser) or sliding gearwheel |
600 |
600 |
drive shaft and/or more than 2 engaged gearwheels |
multi-disc clutch |
2 000 |
2 000 |
drive shaft and/or more than 2 engaged gearwheels |
multi-disc clutch and oil pump |
4 000 |
4 000 |
ANNEX X
CERTIFICATION PROCEDURE FOR PNEUMATIC TYRES
1. Introduction
2. Definitions
3. General requirements
3.2. Tyre rolling resistance coefficient
3.3. Measurement provisions
3.4. Marking and traceability
4. Conformity of the certified CO
2
emissions and fuel consumption related properties
4.3. Frequency of the tests
4.4 Verification procedure
Appendix 1
MODEL OF A CERTIFICATE OF A COMPONENT, SEPARATE TECHNICAL UNIT OR SYSTEM
Maximum format: A4 (210 × 297 mm)
CERTIFICATE ON CO
2
EMISSIONS AND FUEL CONSUMPTION RELATED PROPERTIES OF A TYRE FAMILY
Communication concerning:
|
Administration stamp
|
Technology: |
Code: |
… |
… |
Appendix 2
Tyre rolling resistance coefficient information document
SECTION I
SECTION II
Appendix 3
Input parameters for the vehicle energy consumption calculation tool
Introduction
Definitions
Set of input parameters
Parameter name |
Param ID |
Type |
Unit |
Description/Reference |
Manufacturer |
P230 |
token |
|
|
Model |
P231 |
token |
|
Trade name of manufacturer |
TechnicalReportId |
P232 |
token |
|
|
Date |
P233 |
date |
|
Date and time when the component hash is created. |
AppVersion |
P234 |
token |
|
Version number identifying the evaluation tool |
RRCDeclared |
P046 |
double, 4 |
[N/N] |
|
FzISO |
P047 |
integer |
[N] |
|
Dimension |
P108 |
string |
[-] |
Allowed values: ‘9.00 R20’, ‘9 R22.5’, ‘9.5 R17.5’, ‘10 R17.5’, ‘10 R22.5’, ‘10.00 R20’, ‘11 R22.5’, ‘11.00 R20’, ‘11.00 R22.5’, ‘12 R22.5’, ‘12.00 R20’, ‘12.00 R24’, ‘12.5 R20’, ‘13 R22.5’, ‘14.00 R20’, ‘14.5 R20’, ‘16.00 R20’, ‘205/75 R17.5’, ‘215/75 R17.5’, ‘225/70 R17.5’, ‘225/75 R17.5’, ‘235/75 R17.5’, ‘245/70 R17.5’, ‘245/70 R19.5’, ‘255/70 R22.5’, ‘265/70 R17.5’, ‘265/70 R19.5’, ‘275/70 R22.5’, ‘275/80 R22.5’, ‘285/60 R22.5’, ‘285/70 R19.5’, ‘295/55 R22.5’, ‘295/60 R22.5’, ‘295/80 R22.5’, ‘305/60 R22.5’, ‘305/70 R19.5’, ‘305/70 R22.5’, ‘305/75 R24.5’, ‘315/45 R22.5’, ‘315/60 R22.5’, ‘315/70 R22.5’, ‘315/80 R22.5’, ‘325/95 R24’, ‘335/80 R20’, ‘355/50 R22.5’, ‘365/70 R22.5’, ‘365/80 R20’, ‘365/85 R20’, ‘375/45 R22.5’, ‘375/50 R22.5’, ‘375/90 R22.5’, ‘385/55 R22.5’, ‘385/65 R22.5’, ‘395/85 R20’, ‘425/65 R22.5’, ‘495/45 R22.5’, ‘525/65 R20.5’ |
Appendix 4
Numbering
1. Numbering:
Section 1 |
Section 2 |
Section 3 |
Additional letter to section 3 |
Section 4 |
Section 5 |
Indication of country issuing the certificate |
CO2 certification act (…/2017) |
Latest amending act (zzz/zzzz) |
T = Tyre |
Base certification number 0000 |
Extension 00 |
ANNEX XI
AMENDMENTS TO DIRECTIVE 2007/46/EC
‘41A |
Emissions (Euro VI) heavy duty vehicles/access to information |
Regulation (EC) No 595/2009 Regulation (EU) No 582/2011 |
X (9) |
X (9) |
X |
X (9) |
X (9) |
X’ |
|
|
|
|
‘41B |
CO2 simulation tool licence (heavy-duty vehicles) |
Regulation (EC) 595/2009 Regulation (EU) 2017/2400 |
|
|
|
|
X (16) |
X’ |
|
|
|
|
‘46B |
Rolling resistance determination |
Regulation (EU) 2017/2400, Annex X’ |