COMMISSION REGULATION (EU) No 582/2011
of 25 May 2011
implementing and amending Regulation (EC) No 595/2009 of the European Parliament and of the Council with respect to emissions from heavy duty vehicles (Euro VI) and amending Annexes I and III to Directive 2007/46/EC of the European Parliament and of the Council
(Text with EEA relevance)
Article 1
Subject matter
Article 2
Definitions
Article 3
Requirements for type-approval
Article 4
On-board diagnostics
Article 5
Application for EC type-approval of an engine system or engine family as a separate technical unit
Article 6
Administrative provisions for EC type-approval of an engine system or engine family as a separate technical unit
Article 7
Application for EC type-approval of a vehicle with an approved engine system with regard to emissions and access to vehicle repair and maintenance information
Article 8
Administrative provisions for EC type-approval of a vehicle with an approved engine system with regard to emissions and access to vehicle repair and maintenance information
Article 9
Application for EC type-approval of a vehicle with regard to emissions and access to vehicle repair and maintenance information
Article 10
Administrative provisions for EC type-approval of a vehicle with regard to emissions and access to vehicle repair and maintenance information
Article 11
Conformity of production
Article 12
In-service conformity
Article 13
Remedial measures
Article 14
Requirements to limit off-cycle emissions
Article 15
Pollution control devices
Article 16
Application for EC type-approval of a type of replacement pollution control device as a separate technical unit
Article 17
Administrative provisions for EC type-approval of replacement pollution control device as separate technical unit
Article 18
Amendments to Regulation (EC) No 595/2009
Article 19
Amendments to Directive 2007/46/EC
Article 20
Entry into force
LIST OF ANNEXES
ANNEX I
ADMINISTRATIVE PROVISIONS FOR EC TYPE-APPROVAL
1. REQUIREMENTS ON FUEL RANGE
1.1.
Requirements on universal fuel range type-approval
1.2.
Requirements on restricted fuel range type-approval in case of positive-ignition engines fuelled with natural gas or LPG
2. EXHAUST EMISSIONS TYPE-APPROVAL OF A MEMBER OF A FAMILY
3. ENGINE MARKINGS
3.3.
Labels for NG and LPG fuelled engines
3.3.2.
Properties
3.3.3.
Placing
4. INSTALLATION ON THE VEHICLE
4.2.
Installation of a type-approved engine on a vehicle
4.3.
Inlet to fuel tanks in the case of a petrol or E85 fuelled engine
5. REQUIREMENTS AND TESTS FOR IN-SERVICE TESTING
5.1.
Introduction
5.2.
General Requirements
5.3.
Verification of the availability and conformity of the ECU information required for in-service testing
6. ENGINE FAMILY
6.1.
Parameters defining the engine family
6.2.
Choice of the parent engine
6.3.
Parameters for defining an OBD engine family
7. CONFORMITY OF PRODUCTION
7.1.
General requirements
7.2.
Emissions of pollutants
Figure 1
Schematic of production conformity testing
7.3.
On-board diagnostics (OBD)
7.4.
ECU information required for in-service testing
8. DOCUMENTATION
Appendix 1
Procedure for production conformity testing when standard deviation is satisfactory
Appendix 2
Procedure for production conformity testing when standard deviation is unsatisfactory or unavailable
Appendix 3
Procedure for production conformity testing at manufacturer’s request
Appendix 4
Models of information document
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Parent Engine or Engine Type |
Engine Family Members |
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0. |
GENERAL |
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0.l. |
Make (trade name of manufacturer): |
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0.2. |
Type |
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0.2.0.3. |
Engine type as separate technical unit/engine family as separate technical unit/vehicle with an approved engine with regard to emissions and access to vehicle repair and maintenance information/vehicle with regard to emissions and access to vehicle repair and maintenance information (1) |
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0.2.1. |
Commercial name(s) (if available): |
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0.3. |
Means of identification of type, if marked on the separate technical unit (b): |
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0.3.1. |
Location of that marking: |
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0.5. |
Name and address of manufacturer: |
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0.7. |
In the case of components and separate technical units, location and method of affixing of the EC approval mark: |
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0.8. |
Name(s) and address (es) of assembly plant(s): |
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0.9. |
Name and address of the manufacturer’s representative (if any): |
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Parent Engine or Engine Type |
Engine Family Members |
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3.2. |
Internal combustion engine |
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3.2.1. |
Specific engine information |
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3.2.1.1. |
Working principle: positive ignition/compression ignition (1) Cycle four stroke/two stroke/rotary (1): |
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3.2.1.2. |
Number and arrangement of cylinders: |
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3.2.1.2.1. |
Bore (l) mm |
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3.2.1.2.2. |
Stroke (l) mm |
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3.2.1.2.3. |
Firing order |
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3.2.1.3. |
Engine capacity (m) cm3 |
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3.2.1.4. |
Volumetric compression ratio (2): |
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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 (2) min-1 |
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3.2.1.6.1. |
High engine idling speed (2) min-1 |
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3.2.1.7. |
Carbon monoxide content by volume in the exhaust gas with the engine idling (2): % as stated by the manufacturer (positive-ignition engines only) |
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3.2.1.8. |
Maximum net power (n) … 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 (n) … Nm at … min-1 (manufacturer's declared value) |
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3.2.1.11. |
Manufacturer references of the Documentation package required by Articles 5, 7 and 9 of Regulation (EU) No 582/2011 enabling the 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) (6) |
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3.2.2.2.1. |
Fuels compatible with use by the engine declared by the manufacturer in accordance with point 1.1.2 of Annex I to Regulation (EU) No 582/2011 (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) (2) … 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 (2) |
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3.2.4.2.3.5. |
Injection advance curve (2) |
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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 (2): kPa or characteristic diagram (2): |
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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 (2): … kPa or characteristic diagram (2) |
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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) (2) |
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3.2.4.4. |
Feed pump |
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3.2.4.4.1. |
Pressure (2): … kPa or characteristic diagram (2): |
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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 (2): |
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3.2.6.5. |
Static ignition timing (2): … 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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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: … or |
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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 … or |
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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 (3) |
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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 |
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3.2.11. |
Valve timing or equivalent data |
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3.2.11.1. |
Maximum lift of valves, angles of opening and closing, or timing details of alternative distribution systems, in relation to dead centres. For variable timing system, minimum and maximum timing |
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3.2.11.2. |
Reference and/or setting range (3): |
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3.2.12. |
Measures taken against air pollution |
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3.2.12.1.1 |
Device for recycling crankcase gases: yes/no (2) If yes, description and drawings: If no, compliance with Annex V to Regulation (EU) No 582/2011 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. |
Identifying 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. |
Identifying part number |
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3.2.12.2.6.7. |
Normal operating temperature: … (K) and pressure range: (kPa) |
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3.2.12.2.6.8. |
In the case of periodic regeneration |
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3.2.12.2.6.8.1.1. |
Number of WHTC test cycles without regeneration (n) |
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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 |
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3.2.12.2.7.0.2. |
List of the OBD engine families (when applicable) |
OBD engine family 1: … OBD engine family 2: … etc. … |
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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 point 4(c) of Article 5 and point 4 of Article 9 of Regulation (EU) No 582/2011 and specified in Annex X to that Regulation 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 (4) |
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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 (4) |
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3.2.12.2.7.3.1.1. |
Catalyst monitoring (4) |
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3.2.12.2.7.3.1.2. |
Misfire detection (4) |
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3.2.12.2.7.3.1.3. |
Oxygen sensor monitoring (4) |
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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 (4) |
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3.2.12.2.7.3.2.1. |
Catalyst monitoring (4) |
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3.2.12.2.7.3.2.2. |
Particulate trap monitoring (4) |
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3.2.12.2.7.3.2.3. |
Electronic fuelling system monitoring (4) |
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3.2.12.2.7.3.2.4. |
DeNOx system monitoring (4) |
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3.2.12.2.7.3.2.5. |
Other components monitored by the OBD system (4) |
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|||||||||||||||||||||||||||||||||
3.2.12.2.7.4. |
Criteria for MI activation (fixed number of driving cycles or statistical method) (4) |
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3.2.12.2.7.5. |
List of all OBD output codes and formats used (with explanation of each) (4) |
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3.2.12.2.7.6.5. |
OBD Communication protocol standard (4) |
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3.2.12.2.7.7. |
Manufacturer reference of the OBD related information required by of Article 5(4)(d) and Article 9(4) of Regulation (EU) No 582/2011 for the purpose of complying with the provisions on access to vehicle OBD and vehicle Repair and Maintenance Information, or |
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|||||||||||||||||||||||||||||||||
3.2.12.2.7.7.1. |
As an alternative to a manufacturer reference provided in point 3.2.12.2.7.7 reference of the attachment to this Appendix that contains the following table, once completed according to the given example: Component — Fault code — Monitoring strategy — Fault detection criteria — MI activation criteria — Secondary parameters — Preconditioning — Demonstration test Catalyst — P0420 — Oxygen sensor 1 and 2 signals — Difference between sensor 1 and sensor 2 signals — 3rd cycle — Engine speed, engine load, A/F mode, catalyst temperature — Two Type 1 cycles — Type 1 |
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3.2.12.2.8. |
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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 specified in point (3)(b) of Article 2 of Directive 2007/46/EC: yes/no |
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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 |
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|||||||||||||||||||||||||||||||||
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.) |
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|||||||||||||||||||||||||||||||||
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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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 (2) |
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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) |
|
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||||||||||||||||||||||||||||
3.2.17.7.1. |
Make(s) |
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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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|
||||||||||||||||||||||||||||
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) |
|
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|
|
|
||||||||||||||||||||||||||||
3.2.17.8.1.0.2. |
Calibration for a specific gas composition NG-H/NG-L/NG-HL (1) Transformation for a specific gas composition NG-Ht/NG-Lt/NG-HLt (1) |
|
|
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|
|
||||||||||||||||||||||||||||
3.2.17.8.1.1. |
|
||||||||||||||||||||||||||||||||||
3.5.4. |
CO2 emissions for heavy duty engines |
|
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|
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|
||||||||||||||||||||||||||||
3.5.4.1. |
CO2 mass emissions WHSC test: … g/kWh |
|
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|
||||||||||||||||||||||||||||
3.5.4.2. |
CO2 mass emissions WHTC test: … g/kWh |
|
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|
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|
||||||||||||||||||||||||||||
3.5.5. |
Fuel consumption for heavy duty engines |
|
|
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|
||||||||||||||||||||||||||||
3.5.5.1. |
Fuel consumption WHSC test: … g/kWh |
|
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|
||||||||||||||||||||||||||||
3.5.5.2. |
Fuel consumption WHTC test (5) … g/kWh. |
|
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|
||||||||||||||||||||||||||||
3.6. |
Temperatures permitted by the manufacturer |
|
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|
||||||||||||||||||||||||||||
3.6.1. |
Cooling system |
|
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|
||||||||||||||||||||||||||||
3.6.1.1. |
Maximum temperature at outlet: … K |
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|
||||||||||||||||||||||||||||
3.6.1.2. |
|
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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 |
|
|
|
|
|
|
||||||||||||||||||||||||||||
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 |
|
|
|
|
|
|
||||||||||||||||||||||||||||
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 |
|
|
|
|
|
|
||||||||||||||||||||||||||||
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) |
|
|
|
|
|
|
|
|
Parent Engine or Engine Type |
Engine Family Members |
||||
A |
B |
C |
D |
E |
|||
3.1 |
Manufacturer of the engine |
|
|||||
3.1.1. |
Manufacturer’s engine code (as marked on the engine or other means of identification) |
|
|
|
|
|
|
3.1.2. |
Approval number (if appropriate) including fuel identification marking: |
|
|
|
|
|
|
3.2.2. |
Fuel |
|
|||||
3.2.2.3. |
Fuel tank inlet: restricted orifice/label |
|
|||||
3.2.3. |
Fuel tank(s) |
|
|||||
3.2.3.1. |
Service fuel tank(s) |
|
|||||
3.2.3.1.1. |
Number and capacity of each tank |
|
|||||
3.2.3.2. |
Reserve fuel tank(s) |
|
|||||
3.2.3.2.1. |
Number and capacity of each tank |
|
|||||
3.2.8. |
Intake system |
|
|||||
3.2.8.3.3. |
Actual Intake system depression at rated engine speed and at 100 % load on the vehicle: kPa |
|
|||||
3.2.8.4.2. |
Air filter, drawings: … or … |
|
|||||
3.2.8.4.2.1. |
Make(s) |
|
|||||
3.2.8.4.2.2. |
Type(s) |
|
|||||
3.2.8.4.3. |
Intake silencer, drawings |
|
|||||
3.2.8.4.3.1. |
Make(s) |
|
|||||
3.2.8.4.3.2. |
Type(s) |
|
|||||
3.2.9. |
Exhaust system |
|
|||||
3.2.9.2. |
Description and/or drawing of the exhaust system |
|
|||||
3.2.9.2.2. |
Description and/or drawing of the elements of the exhaust system that are not part of the engine system |
|
|||||
3.2.9.3.1 |
Actual exhaust back pressure at rated engine speed and at 100 % load on the vehicle (compression-ignition engines only): … kPa |
|
|||||
3.2.9.7. |
Exhaust system volume: … dm3 |
|
|||||
3.2.9.7.1. |
Actual volume of the complete Exhaust system (vehicle and engine system): … dm3 |
|
|||||
3.2.12.2.7. |
|
|
|||||
3.2.12.2.7.0. |
Alternative approval as defined in point 2.4 of Annex X to Regulation (EU) No 582/2011 used. Yes/No |
|
|||||
3.2.12.2.7.1. |
OBD components on-board the vehicle |
|
|||||
3.2.12.2.7.2. |
When appropriate, manufacturer reference of the documentation package related to the installation on the vehicle of the OBD system of an approved engine |
|
|||||
3.2.12.2.7.3. |
Written description and/or drawing of the MI (6) |
|
|||||
3.2.12.2.7.4. |
Written description and/or drawing of the OBD off-board communication interface (6) |
|
|||||
3.2.12.2.8. |
|
|
|||||
3.2.12.2.8.0. |
Alternative approval as defined in point 2.1 of Annex XIII to Regulation (EU) No 582/2011 used. Yes/No |
|
|||||
3.2.12.2.8.1. |
Components on-board the vehicle of the systems ensuring the correct operation of NOx control measures |
|
|||||
3.2.12.2.8.2. |
Activation of the creep mode ‘disable after restart’/‘disable after fuelling’/‘disable after parking’ (7) |
|
|||||
3.2.12.2.8.3. |
When appropriate, manufacturer reference of the documentation package related to the installation on the vehicle of the system ensuring the correct operation of NOx control measures of an approved engine |
|
|||||
3.2.12.2.8.4. |
Written description and/or drawing of the warning signal (6) |
|
|||||
3.2.12.2.8.5. |
Heated/non-heated reagent tank and dosing system (see point 2.4 of Annex XIII to Regulation (EU) No 582/2011) |
|
Appendix
to information document
Information on test conditions
1.
Spark plugs
2.
Ignition coil
3.
Lubricant used
4.
Engine-driven equipment
Equipment |
Idle |
Low Speed |
High Speed |
Preferred Speed (2) |
n95h |
Pa Auxiliaries/equipment required according to UN/ECE R 49, Annex 4B, Appendix 7 |
|
|
|
|
|
Pb Auxiliaries/equipment not required according to UN/ECE R 49, Annex 4B, Appendix 7 |
|
|
|
|
|
5.
Engine performance (declared by manufacturer)
(
8
)
6.
Dynamometer load setting information (if applicable)
V (km/h) |
V2 (km/h) |
V1 (km/h) |
Mean corrected coast down time |
120 |
|
|
|
100 |
|
|
|
80 |
|
|
|
60 |
|
|
|
40 |
|
|
|
20 |
|
|
|
V (km/h) |
CP corrected (kW) |
120 |
|
100 |
|
80 |
|
60 |
|
40 |
|
20 |
|
7.
Test conditions for OBD testing
Appendix 5
Model of EC type-approval certificate of an engine type/component as separate technical unit
EC TYPE-APPROVAL CERTIFICATE
Communication concerning:
|
Stamp of type-approval authority |
SECTION I
SECTION II
Addendum
to EC type-approval certificate No …
1. ADDITIONAL INFORMATION
1.4.1.
WHSC test
WHSC test (if applicable) |
||||||
DF Mult/add (1) |
CO |
THC |
NOx |
PM Mass |
NH3 |
PM Number |
|
|
|
|
|
|
|
Emissions |
CO (mg/kWh) |
THC (mg/kWh) |
NOx (mg/kWh) |
PM Mass (mg/kWh) |
NH3 ppm |
PM Number (#/kWh) |
Test result |
|
|
|
|
|
|
Calculated with DF |
|
|
|
|
|
|
CO2 emissions mass emission: … g/kWh Fuel consumption: … g/kWh |
1.4.2.
WHTC test
WHTC test |
||||||
DF Mult/add (1) |
CO |
THC |
NOx |
PM Mass |
NH3 |
PM Number |
|
|
|
|
|
|
|
Emissions |
CO (mg/kWh) |
THC (mg/kWh) |
NOx (mg/kWh) |
PM Mass (mg/kWh) |
NH3 ppm |
PM Number |
Cold start |
|
|
|
|
|
|
Hot start w/o regeneration |
|
|
|
|
|
|
Hot start with regeneration (1) |
|
|
|
|
|
|
kr,u (mult/add) (1) kr,d (mult/add) (1) |
|
|
|
|
|
|
Weighted test result |
|
|
|
|
|
|
Final test result with DF |
|
|
|
|
|
|
CO2 emissions mass emission: … g/kWh Fuel consumption: … g/kWh |
1.4.3.
Idle test
Test |
CO value (% vol.) |
Lambda (1) |
Engine speed (min–1) |
Engine oil temperature (°C) |
Low idle test |
|
N/A |
|
|
High idle test |
|
|
|
|
1.5
Power measurement
1.5.1.
Engine power measured on test bench
Measured engine speed (rpm) |
|
|
|
|
|
|
|
Measured fuel flow (g/h) |
|
|
|
|
|
|
|
Measured torque (Nm) |
|
|
|
|
|
|
|
Measured power (kW) |
|
|
|
|
|
|
|
Barometric pressure (kPa) |
|
|
|
|
|
|
|
Water vapour pressure (kPa) |
|
|
|
|
|
|
|
Intake air temperature (K) |
|
|
|
|
|
|
|
Power correction factor |
|
|
|
|
|
|
|
Corrected power (kW) |
|
|
|
|
|
|
|
Auxiliary power (kW) (1) |
|
|
|
|
|
|
|
Net power (kW) |
|
|
|
|
|
|
|
Net torque (Nm) |
|
|
|
|
|
|
|
Corrected specific fuel consumption (g/kWh) |
|
|
|
|
|
|
|
1.5.2.
Additional data
Appendix 6
Model of ECT type-approval certificate of a type of vehicle with an approved engine
EC TYPE-APPROVAL CERTIFICATE
Communication concerning:
|
Stamp of type-approval authority |
SECTION I
SECTION II
Appendix 7
Model of EC type-approval certificate of a type of vehicle with regard to a system
EC TYPE-APPROVAL CERTIFICATE
Communication concerning:
|
Stamp of type-approval authority |
SECTION I
SECTION II
Addendum
to EC type-approval certificate No …
1. ADDITIONAL INFORMATION
1.4.1.
WHSC test
WHSC test (if applicable) |
||||||
DF Mult/add (1) |
CO |
THC |
NOx |
PM Mass |
NH3 |
PM Number |
|
|
|
|
|
|
|
Emissions |
CO (mg/kWh) |
THC (mg/kWh) |
NOx (mg/kWh) |
PM Mass (mg/kWh) |
NH3 ppm |
PM Number (#/kWh) |
Test result |
|
|
|
|
|
|
Calculated with DF |
|
|
|
|
|
|
CO2 emissions mass emission: … g/kWh Fuel consumption: … g/kWh |
1.4.2.
WHTC test
WHTC test |
||||||
DF Mult/add (1) |
CO |
THC |
NOx |
PM Mass |
NH3 |
PM Number |
|
|
|
|
|
|
|
Emissions |
CO (mg/kWh) |
THC (mg/kWh) |
NOx (mg/kWh) |
PM Mass (mg/kWh) |
NH3 ppm |
PM Number |
Cold start |
|
|
|
|
|
|
Hot start w/o regeneration |
|
|
|
|
|
|
Hot start with regeneration (1) |
|
|
|
|
|
|
kr,u (mult/add) (1) kr,d (mult/add) (1) |
|
|
|
|
|
|
Weighted test result |
|
|
|
|
|
|
Final test result with DF |
|
|
|
|
|
|
CO2 emissions mass emission: … g/kWh Fuel consumption: … g/kWh |
1.4.3.
Idle test
Test |
CO value (% vol.) |
Lambda (1) |
Engine speed (min–1) |
Engine oil temperature (°C) |
Low idle test |
|
N/A |
|
|
High idle test |
|
|
|
|
1.5
Power measurement
1.5.1.
Engine power measured on test bench
Measured engine speed (rpm) |
|
|
|
|
|
|
|
Measured fuel flow (g/h) |
|
|
|
|
|
|
|
Measured torque (Nm) |
|
|
|
|
|
|
|
Measured power (kW) |
|
|
|
|
|
|
|
Barometric pressure (kPa) |
|
|
|
|
|
|
|
Water vapour pressure (kPa) |
|
|
|
|
|
|
|
Intake air temperature (K) |
|
|
|
|
|
|
|
Power correction factor |
|
|
|
|
|
|
|
Corrected power (kW) |
|
|
|
|
|
|
|
Auxiliary power (kW) (1) |
|
|
|
|
|
|
|
Net power (kW) |
|
|
|
|
|
|
|
Net torque (Nm) |
|
|
|
|
|
|
|
Corrected specific fuel consumption (g/kWh) |
|
|
|
|
|
|
|
1.5.2.
Additional data
Appendix 8
Example of the EC type-approval mark
Appendix 9
EC Type-Approval Certification Numbering System
Character |
NOx OTL(1) |
PM OTL(2) |
Reagent quality and consumption |
Implementation dates: new types |
Implementation dates: all vehicles |
Last date of registration |
A |
Row ‘phase-in period’ of Tables 1 and 2 |
Performance. Monitoring(3) |
Phase in(4) |
31.12.2012 |
31.12.2013 |
1.9.2015 |
B |
Row ‘phase-in period’ of Tables 1 and 2 |
Row ‘phase-in period’ of Table 1 |
Phase in(4) |
1.9.2014 |
1.9.2015 |
31.12.2016 |
C |
Row ‘general requirements’ of Tables 1 and 2 |
Row ‘general requirements’ of Table 1 |
General(5) |
31.12.2015 |
31.12.2016 |
|
Appendix 10
ANNEX II
CONFORMITY OF IN-SERVICE ENGINES OR VEHICLES
1. INTRODUCTION
2. PROCEDURE FOR IN-SERVICE CONFORMITY
3. ENGINE OR VEHICLE SELECTION
Cumulative number of engines tested (sample size) |
Pass decision number |
Fail decision number |
3 |
— |
3 |
4 |
0 |
4 |
5 |
0 |
4 |
6 |
1 |
4 |
7 |
1 |
4 |
8 |
2 |
4 |
9 |
2 |
4 |
10 |
3 |
4 |
4. TEST CONDITIONS
4.1.
Vehicle payload
4.2.
Ambient conditions
4.3.
Engine coolant temperature
4.4.1.
Lubricating oil
4.4.2.
Fuel
4.4.3.
Reagent
4.5.
Trip requirements
4.6.
Operational requirements
5. ECU DATA STREAM
6. EMISSIONS EVALUATION
Pollutant |
Maximum allowed conformity factor |
CO |
1,50 |
THC(2) |
1,50 |
NMHC(3) |
1,50 |
CH4 (3) |
1,50 |
NOx |
1,50 |
PM mass |
— |
PM number |
— |
7. EVALUATION OF IN-SERVICE CONFORMITY RESULTS
8. CONFIRMATORY VEHICLE TESTING
9. PLAN OF REMEDIAL MEASURES
10. REPORTING PROCEDURES
10.1.1.
General
10.1.2.
Engine/vehicle selection
10.1.3.
Equipment
10.1.4.
Test data
10.1.5.
Engine information
10.1.6.
Vehicle information
10.1.7.
Test route characteristics
10.1.8.
Instantaneous measured data
10.1.9.
Instantaneous calculated data
10.1.10.
Averaged and integrated data
10.1.11.
Pass-fail results
10.1.12.
Test verifications
Appendix 1
Test procedure for vehicle emissions testing with portable emissions measurement systems
1. INTRODUCTION
2. TEST PROCEDURE
2.1.
General requirements
2.2.
Test parameters
Parameter |
Unit |
Source |
THC concentration(1) |
ppm |
Analyser |
CO concentration(1) |
ppm |
Analyser |
NOx concentration(1) |
ppm |
Analyser |
CO2 concentration(1) |
ppm |
Analyser |
CH4 concentration(1) (2) |
ppm |
Analyser |
Exhaust gas flow |
kg/h |
Exhaust Flow Meter (hereinafter ‘EFM’) |
Exhaust temperature |
°K |
EFM |
Ambient temperature(3) |
°K |
Sensor |
Ambient pressure |
kPa |
Sensor |
Engine torque(4) |
Nm |
ECU or Sensor |
Engine speed |
rpm |
ECU or Sensor |
Engine fuel flow |
g/s |
ECU or Sensor |
Engine coolant temperature |
°K |
ECU or Sensor |
Engine intake air temperature(3) |
°K |
Sensor |
Vehicle ground speed |
km/h |
ECU and GPS |
Vehicle latitude |
degree |
GPS |
Vehicle longitude |
degree |
GPS |
2.3.
Preparation of the vehicle
2.4.
Installation of the measuring equipment
2.4.1.
Main Unit
2.4.2.
Exhaust flow meter
2.4.3.
Global Positioning System
2.4.4.
Connection with the vehicle ECU
2.4.5.
Sampling of gaseous emissions
2.5.
Pre-test procedures
2.5.1.
Starting and stabilising the PEMS instruments
2.5.2.
Cleaning the sampling system
2.5.3.
Checking and calibrating the analysers
2.5.4.
Cleaning the EFM
2.6.
Emissions test run
2.6.1.
Test start
2.6.2.
Test run
2.6.3.
End of test sequence
2.7.
Verification of the measurements
2.7.1.
Checking of the analysers
2.7.2.
Zero drift
2.7.3.
Span drift
2.7.4.
Drift verification
2.7.5.
Drift correction
3. CALCULATION OF THE EMISSIONS
3.1.
Time alignment of data
3.1.1.
Gas analysers data
3.1.2.
Gas analysers and EFM data
3.1.3.
PEMS and engine data
3.1.4.
Procedure for improved time-alignment of the PEMS data
3.2.
Data consistency checks
3.2.1.
Analysers and EFM data
Slope of the regression line, m |
0,9 to 1,1 — Recommended |
Coefficient of determination r2 |
min. 0,90 — Mandatory |
3.2.2.
ECU torque data
3.2.3.
Brake-Specific Fuel Consumption
3.2.4.
Odometer
3.2.5.
Ambient pressure
3.3.
Dry-Wet correction
3.4.
NO
x
correction for humidity and temperature
3.5.
Calculation of the instantaneous gaseous emissions
4. DETERMINATION OF EMISSIONS AND CONFORMITY FACTORS
4.1.
Averaging window principle
Figure 1
Vehicle speed versus time and Vehicle averaged emissions, starting from the first averaging window, versus time
4.2.
Work based method
Figure 2
Work based method
4.2.1.
Calculation of the specific emissions
4.2.2.
Selection of valid windows
4.2.3.
Calculation of the conformity factors
4.3.
CO
2
mass based method
Figure 3
CO
2
mass based method
4.3.1.
Selection of valid windows
4.3.2.
Calculation of the conformity factors
Appendix 2
Portable measurement equipment
1. GENERAL
2. MEASURING EQUIPMENT
2.1.
Gas analysers general specifications
2.2.
Gas analysers technology
2.3.
Sampling of gaseous emissions
2.4.
Other instruments
3. AUXILIARY EQUIPMENT
3.1.
Exhaust Gas Flow Meter (EFM) tailpipe connection
3.2.
PEMS location and mounting hardware
3.3.
Electrical power
Appendix 3
Calibration of portable measurement equipment
1. EQUIPMENT CALIBRATION AND VERIFICATION
1.1.
Calibration gases
1.2.
Leakage test
1.3.
Response time check of the analytical system
Appendix 4
Method to check the conformity of the ECU torque signal
1. INTRODUCTION
2. THE ‘MAXIMUM TORQUE’ METHOD
ANNEX III
VERIFYING EXHAUST EMISSIONS
1. INTRODUCTION
2. GENERAL REQUIREMENTS
Fuel |
ρ e |
Gas |
|||||
NOx |
CO |
HC |
CO2 |
O2 |
CH4 |
||
ρ gas [kg/m3] |
|||||||
2,053 |
1,250 |
(1) |
1,9636 |
1,4277 |
0,716 |
||
u gas (2) |
|||||||
Diesel (B7) |
1,2943 |
0,001586 |
0,000966 |
0,000482 |
0,001517 |
0,001103 |
0,000553 |
Ethanol (ED95) |
1,2768 |
0,001609 |
0,000980 |
0,000780 |
0,001539 |
0,001119 |
0,000561 |
CNG(3) |
1,2661 |
0,001621 |
0,000987 |
0,000528(4) |
0,001551 |
0,001128 |
0,000565 |
Propane |
1,2805 |
0,001603 |
0,000976 |
0,000512 |
0,001533 |
0,001115 |
0,000559 |
Butane |
1,2832 |
0,001600 |
0,000974 |
0,000505 |
0,001530 |
0,001113 |
0,000558 |
LPG(5) |
1,2811 |
0,001602 |
0,000976 |
0,000510 |
0,001533 |
0,001115 |
0,000559 |
Fuel |
ρ de |
Gas |
|||||
NOx |
CO |
HC |
CO2 |
O2 |
CH4 |
||
ρ gas [kg/m3] |
|||||||
2,053 |
1,250 |
(6) |
1,9636 |
1,4277 |
0,716 |
||
u gas (7) |
|||||||
Diesel (B7) |
1,293 |
0,001588 |
0,000967 |
0,000483 |
0,001519 |
0,001104 |
0,000553 |
Ethanol (ED95) |
1,293 |
0,001588 |
0,000967 |
0,000770 |
0,001519 |
0,001104 |
0,000553 |
CNG(8) |
1,293 |
0,001588 |
0,000967 |
0,000517(9) |
0,001519 |
0,001104 |
0,000553 |
Propane |
1,293 |
0,001588 |
0,000967 |
0,000507 |
0,001519 |
0,001104 |
0,000553 |
Butane |
1,293 |
0,001588 |
0,000967 |
0,000501 |
0,001519 |
0,001104 |
0,000553 |
LPG(10) |
1,293 |
0,001588 |
0,000967 |
0,000505 |
0,001519 |
0,001104 |
0,000553 |
Appendix 1
Procedure for the measurement of ammonia
2.1.
Laser Diode Spectrometer (LDS)
2.1.1.
Measurement principle
2.1.2.
Installation
2.1.3.
Cross interference
2.2.
Fourier Transform Infrared (hereinafter ‘FTIR’) analyser
2.2.1.
Measurement principle
2.2.2.
Installation and sampling
2.2.3.
Cross interference
3. EMISSIONS TEST PROCEDURE AND EVALUATION
3.1.
Checking the analysers
3.2.
Collection of emission relevant data
3.3.
Operations after test
3.4.
Analyser drift
3.5.
Data evaluation
4. ANALYSER SPECIFICATION AND VERIFICATION
4.1.
Linearity requirements
4.2.
Analyser specifications
4.2.1.
Minimum detection limit
4.2.2.
Accuracy
4.2.3.
Zero drift
4.2.4.
Span drift
4.2.5.
System response time
4.2.6.
Rise time
4.2.7.
NH
3
calibration gas
5. ALTERNATIVE SYSTEMS
Appendix 2
Determination of emissions from positive-ignition engines fuelled with petrol or E85
2.1.1.
Calculation of mass emission (raw exhaust gas)
Fuel |
ρ e |
Gas |
|||||
NOx |
CO |
HC |
CO2 |
O2 |
CH4 |
||
ρ gas [kg/m3] |
|||||||
2,053 |
1,250 |
(1) |
1,9636 |
1,4277 |
0,716 |
||
u gas (2) |
|||||||
Petrol (E10) |
1,2931 |
0,001587 |
0,000966 |
0,000499 |
0,001518 |
0,001104 |
0,000553 |
Ethanol (E85) |
1,2797 |
0,001604 |
0,000977 |
0,000730 |
0,001534 |
0,001116 |
0,000559 |
2.1.2.
Calculation of mass emission (dilute exhaust gas)
Fuel |
ρ e |
Gas |
|||||
NOx |
CO |
HC |
CO2 |
O2 |
CH4 |
||
ρ gas [kg/m3] |
|||||||
2,053 |
1,250 |
(3) |
1,9636 |
1,4277 |
0,716 |
||
u gas (4) |
|||||||
Petrol (E10) |
1,293 |
0,001588 |
0,000967 |
0,000499 |
0,001519 |
0,001104 |
0,000554 |
Ethanol (E85) |
1,293 |
0,001588 |
0,000967 |
0,000722 |
0,001519 |
0,001104 |
0,000554 |
2.1.2.1.
Background correction
ANNEX IV
EMISSIONS DATA REQUIRED AT TYPE-APPROVAL FOR ROADWORTHINESS PURPOSES
Measuring carbon monoxide emissions at idling speeds
1. INTRODUCTION
2. GENERAL REQUIREMENTS
|
|
|||||||||||
|
|
3. TECHNICAL REQUIREMENTS
ANNEX V
VERIFYING EMISSIONS OF CRANKCASE GASES
1. INTRODUCTION
2. GENERAL REQUIREMENTS
3. SPECIFIC REQUIREMENTS
ANNEX VI
REQUIREMENTS TO LIMIT OFF-CYCLE EMISSIONS (OCE) AND IN-USE EMISSIONS
1. INTRODUCTION
2. DEFINITIONS
3. GENERAL REQUIREMENTS
4. PERFORMANCE REQUIREMENTS
5. AMBIENT AND OPERATING CONDITIONS
6. OFF-CYCLE LABORATORY TESTING AT TYPE-APPROVAL
7. WORLD-HARMONISED NOT-TO-EXCEED DEFICIENCIES
8. WORLD-HARMONISED NOT-TO-EXCEED EXEMPTIONS
9. STATEMENT OF OFF-CYCLE EMISSION COMPLIANCE
10. DOCUMENTATION
ANNEX VII
VERIFYING THE DURABILITY OF ENGINE SYSTEMS
1. INTRODUCTION
2. SELECTION OF ENGINES FOR ESTABLISHING USEFUL LIFE DETERIORATION FACTORS
3. ESTABLISHING USEFUL LIFE DETERIORATION FACTORS
3.1.
General
3.2.
Service accumulation schedule
3.2.1.
In-service and dynamometer service accumulation
3.2.1.8.
Minimum service accumulation period
Category of vehicle in which engine will be installed |
Minimum service accumulation period |
Useful life (Article of Regulation (EC) No 595/2009) |
Category N1 vehicles |
160 000 km |
Article 4(2)(a) |
Category N2 vehicles |
188 000 km |
Article 4(2)(b) |
Category N3 vehicles with a maximum technically permissible mass not exceeding 16 tonnes |
188 000 km |
Article 4(2)(b) |
Category N3 vehicles with a maximum technically permissible mass exceeding 16 tonnes |
233 000 km |
Article 4(2)(c) |
Category M1 vehicles |
160 000 km |
Article 4(2)(a) |
Category M2 vehicles |
160 000 km |
Article 4(2)(a) |
Category M3 vehicles of classes I, II, A and B as defined in Annex I to Directive 2001/85/EC, with a maximum technically permissible mass not exceeding 7,5 tonnes |
188 000 km |
Article 4(2)(b) |
Category M3 vehicles of classes III and B as defined in Annex I to Directive 2001/85/EC with a maximum technically permissible mass exceeding 7,5 tonnes |
233 000 km |
Article 4(2)(c) |
3.3.
Engine testing
3.3.1.
Engine system stabilisation
3.3.2.
Service accumulation testing
3.4.
Reporting
3.5.
Determination of deterioration factors
Figure 1
Example of deterioration factor determination
3.6.
Assigned deterioration factors
Test cycle |
CO |
THC(1) |
NMHC(2) |
CH4 (2) |
NOx |
NH3 |
PM mass |
PM number |
WHTC |
1,3 |
1,3 |
1,4 |
1,4 |
1,15 |
1,0 |
1,05 |
1,0 |
WHSC |
1,3 |
1,3 |
1,4 |
1,4 |
1,15 |
1,0 |
1,05 |
1,0 |
3.7.
Application of deterioration factors
3.8.
Checking of conformity of production
4. MAINTENANCE
4.1.
Emission-related scheduled maintenance
4.2.
Changes to scheduled maintenance
4.3.
Non-emission-related scheduled maintenance
4.4.
Repair
ANNEX VIII
CO
2
EMISSIONS AND FUEL CONSUMPTION
1. INTRODUCTION
2. GENERAL REQUIREMENTS
3. DETERMINATION OF CO
2
EMISSIONS
3.1.
Raw measurement
3.1.1.
Measurement
3.1.2.
Data evaluation
3.1.3.
Calculation of cycle averaged emission
3.2.
Dilute measurement
3.2.1.
Measurement
3.2.2.
Data evaluation
3.2.3.
Calculation of cycle averaged emission
3.3.
Calculation of brake specific emissions
3.3.1.
WHTC
3.3.2.
WHSC
4. DETERMINATION OF FUEL CONSUMPTION
4.1.
Measurement
4.2.
Data evaluation
4.3.
Calculation of cycle averaged fuel consumption
4.4.
Calculation of brake specific fuel consumption
4.4.1.
WHTC
4.4.2.
WHSC
Appendix 1
Provisions on CO
2
emissions and fuel consumption for extension of an EC type-approval for a vehicle type approved under Regulation (EC) No 595/2009 and this Regulation with a reference mass exceeding 2 380 kg but not exceeding 2 610 kg
1. INTRODUCTION
2. GENERAL REQUIREMENTS
ANNEX IX
SPECIFICATIONS OF REFERENCE FUELS
Parameter |
Unit |
Limits(1) |
Test method |
|||
Minimum |
Maximum |
|||||
Cetane index |
|
46,0 |
— |
EN ISO 4264 |
||
Cetane number(2) |
|
52,0 |
56,0 |
EN-ISO 5165 |
||
Density at 15 °C |
kg/m3 |
833 |
837 |
EN-ISO 3675 EN ISO 12185 |
||
Distillation: |
|
|
|
|
||
|
°C |
245 |
— |
EN-ISO 3405 |
||
|
°C |
345 |
350 |
EN-ISO 3405 |
||
|
°C |
— |
360 |
EN-ISO 3405 |
||
Flash point |
°C |
55 |
— |
EN 22719 |
||
CFPP |
°C |
— |
–5 |
EN 116 |
||
Viscosity at 40 °C |
mm2/s |
2,3 |
3,3 |
EN-ISO 3104 |
||
Polycyclic aromatic hydrocarbons |
% m/m |
2,0 |
4,0 |
EN 12916 |
||
Sulphur content |
mg/kg |
— |
10 |
EN-ISO 20846/EN-ISO 20884 |
||
Copper corrosion (3h at 50 °C) |
Rating |
— |
Class 1 |
EN-ISO 2160 |
||
Conradson carbon residue (10 % DR) |
% m/m |
— |
0,2 |
EN-ISO 10370 |
||
Ash content |
% m/m |
— |
0,01 |
EN-ISO 6245 |
||
Total contamination |
mg/kg |
— |
24 |
EN 12662 |
||
Water content |
% m/m |
— |
0,02 |
EN-ISO 12937 |
||
Neutralisation (strong acid) number |
mg KOH/g |
— |
0,10 |
ASTM D 974 |
||
Oxidation stability(3) |
mg/ml |
— |
0,025 |
EN-ISO 12205 |
||
Lubricity (HFRR wear scan diameter at 60 °C) |
μm |
— |
400 |
EN ISO 12156 |
||
Oxidation stability at 110 °C(3) |
H |
20,0 |
|
EN 15751 |
||
FAME(4) |
% v/v |
6,0 |
7,0 |
EN 14078 |
Parameter |
Unit |
Limits(6) |
Test method(7) |
|
|
|
Minimum |
Maximum |
|
Total alcohol (Ethanol incl. content on higher saturated alcohols) |
% m/m |
92,4 |
|
EN 15721 |
Other higher saturated mono-alcohols (C3-C5) |
% m/m |
|
2,0 |
EN 15721 |
Methanol |
% m/m |
|
0,3 |
EN 15721 |
Density at 15 °C |
kg/m3 |
793,0 |
815,0 |
EN-ISO 12185 |
Acidity, calculated as acetic acid |
% m/m |
|
0,0025 |
EN 15491 |
Appearance |
|
Bright and clear |
|
|
Flashpoint |
°C |
10 |
|
EN 3679 |
Dry residue |
mg/kg |
|
15 |
EN 15691 |
Water content |
% m/m |
|
6,5 |
EN 15489(8) EN-ISO 12937 EN 15692 |
Aldehydes calculated as acetaldehyde |
% m/m |
|
0,0050 |
ISO 1388-4 |
Esters calculated as ethylacetat |
% m/m |
|
0,1 |
ASTM D1617 |
Sulphur content |
mg/kg |
|
10,0 |
EN 15485 EN 15486 |
Sulphates |
mg/kg |
|
4,0 |
EN 15492 |
Particulate contamination |
mg/kg |
|
24 |
EN 12662 |
Phosphorus |
mg/l |
|
0,20 |
EN 15487 |
Inorganic chloride |
mg/kg |
|
1,0 |
EN 15484 or EN 15492 |
Copper |
mg/kg |
|
0,100 |
EN 15488 |
Electrical Conductivity |
μS/cm |
|
2,50 |
DIN 51627-4 or prEN 15938 |
Parameter |
Unit |
Limits(9) |
Test method(10) |
|||
Minimum |
Maximum |
|||||
Research octane number, RON |
|
95,0 |
97,0 |
EN-ISO 5164:2005(11) |
||
Motor octane number, MON |
|
84,0 |
86,0 |
EN-ISO 5163:2005(11) |
||
Density at 15 °C |
kg/m3 |
743 |
756 |
EN-ISO 3675 EN-ISO 12185 |
||
Vapour pressure |
kPa |
56,0 |
60,0 |
EN-ISO 13016-1 (DVPE) |
||
Water content |
% v/v |
|
0,015 |
ASTM E 1064 |
||
Distillation: |
|
|
|
|
||
|
% v/v |
24,0 |
44,0 |
EN-ISO 3405 |
||
|
% v/v |
56,0 |
60,0 |
EN-ISO 3405 |
||
|
% v/v |
88,0 |
90,0 |
EN-ISO 3405 |
||
|
°C |
190 |
210 |
EN-ISO 3405 |
||
Residue |
% v/v |
— |
2,0 |
EN-ISO 3405 |
||
Hydrocarbon analysis: |
|
|
|
|
||
|
% v/v |
3,0 |
18,0 |
EN 14517 EN 15553 |
||
|
% v/v |
25,0 |
35,0 |
EN 14517 EN 15553 |
||
|
% v/v |
0,4 |
1,0 |
EN 12177 EN 238, EN 14517 |
||
|
% v/v |
Report |
EN 14517 EN 15553 |
|||
Carbon/hydrogen ratio |
|
Report |
|
|||
Carbon/oxygen ratio |
|
Report |
|
|||
Induction period(12) |
minutes |
480 |
— |
EN-ISO 7536 |
||
Oxygen content(13) |
% m/m |
3,7 |
EN 1601 EN 13132 EN 14517 |
|||
Existent gum |
mg/ml |
— |
0,04 |
EN-ISO 6246 |
||
Sulphur content(14) |
mg/kg |
— |
10 |
EN-ISO 20846 EN ISO 20884 |
||
Copper corrosion (3 h at 50 °C) |
rating |
— |
Class 1 |
EN-ISO 2160 |
||
Lead content |
mg/l |
— |
5 |
EN 237 |
||
Phosphorus content(15) |
mg/l |
— |
1,3 |
ASTM D 3231 |
||
Ethanol(12) |
% v/v |
9,5 |
10,0 |
EN 1601 EN 13132 EN 14517 |
Parameter |
Unit |
Limits(16) |
Test method |
|
Minimum |
Maximum |
|||
Research octane number, RON |
|
95,0 |
— |
EN-ISO 5164 |
Motor octane number, MON |
|
85,0 |
— |
EN-ISO 5163 |
Density at 15 °C |
kg/m3 |
Report |
ISO 3675 |
|
Vapour pressure |
kPa |
40,0 |
60,0 |
EN-ISO 13016-1 (DVPE) |
Sulphur content(17) |
mg/kg |
— |
10 |
EN 15485 or EN 15486 |
Oxidation stability |
Minutes |
360 |
|
EN-ISO 7536 |
Existent gum content (solvent washed) |
mg/100 ml |
— |
5 |
EN-ISO 6246 |
Appearance This shall be determined at ambient temperature or 15 °C whichever is higher. |
|
Clear and bright, visibly free of suspended or precipitated contaminants |
Visual inspection |
|
Ethanol and higher alcohols(18) |
% v/v |
83 |
85 |
EN 1601 EN 13132 EN 14517 E DIN 51627-3 |
Higher alcohols (C3-C8) |
% v/v |
— |
2,0 |
E DIN 51627-3 |
Methanol |
% v/v |
|
1,00 |
E DIN 51627-3 |
Petrol(19) |
% v/v |
Balance |
EN 228 |
|
Phosphorus |
mg/l |
0,20(20) |
EN 15487 |
|
Water content |
% v/v |
|
0,300 |
EN 15489 or EN 15692 |
Inorganic chloride content |
mg/l |
|
1 |
EN 15492 |
pHe |
|
6,5 |
9,0 |
EN 15490 |
Copper strip corrosion (3 h at 50 °C) |
Rating |
Class 1 |
|
EN ISO 2160 |
Acidity, (as acetic acid CH3COOH) |
% m/m (mg/l) |
— |
0,0050 (40) |
EN 15491 |
Electric Conductivity |
μS/cm |
1,5 |
DIN 51627-4 or prEN 15938 |
|
Carbon/hydrogen ratio |
|
report |
|
|
Carbon/oxygen ratio |
|
report |
|
Parameter |
Unit |
Fuel A |
Fuel B |
Test method |
Composition: |
|
|
|
EN 27941 |
C3-content |
% v/v |
30 ± 2 |
85 ± 2 |
|
C4-content |
% v/v |
Balance(21) |
Balance(21) |
|
< C3, > C4 |
% v/v |
Maximum 2 |
Maximum 2 |
|
Olefins |
% v/v |
Maximum 12 |
Maximum 15 |
|
Evaporation residue |
mg/kg |
Maximum 50 |
Maximum 50 |
EN 15470 |
Water at 0 °C |
|
Free |
Free |
EN 15469 |
Total sulphur content including odorant |
mg/kg |
Maximum 10 |
Maximum 10 |
EN 24260, ASTM D 3246 ASTM 6667 |
Hydrogen sulphide |
|
None |
None |
EN-ISO 8819 |
Copper strip corrosion (1 h at 40 °C) |
Rating |
Class 1 |
Class 1 |
ISO 6251(22) |
Odour |
|
Characteristic |
Characteristic |
|
Motor octane number(23) |
|
Minimum 89,0 |
Minimum 89,0 |
EN 589 Annex B |
Characteristics |
Units |
Basis |
Limits |
Test method |
|
minimum |
maximum |
||||
Reference fuel GR |
|||||
Composition |
|
|
|
|
|
Methane |
|
87 |
84 |
89 |
|
Ethane |
|
13 |
11 |
15 |
|
Balance(24) |
% mole |
— |
— |
1 |
ISO 6974 |
Sulphur content |
mg/m3 (25) |
— |
|
10 |
ISO 6326-5 |
Composition |
|
|
|
|
|
Methane |
|
92,5 |
91,5 |
93,5 |
|
Balance(26) |
% mole |
— |
— |
1 |
ISO 6974 |
N2 |
% mole |
7,5 |
6,5 |
8,5 |
|
Sulphur content |
mg/m3 (27) |
— |
— |
10 |
ISO 6326-5 |
Composition |
|
|
|
|
|
Methane |
% mole |
86 |
84 |
88 |
|
Balance(28) |
% mole |
— |
— |
1 |
ISO 6974 |
N2 |
% mole |
14 |
12 |
16 |
|
Sulphur content |
mg/m3 (29) |
— |
— |
10 |
ISO 6326-5 |
ANNEX X
ON-BOARD DIAGNOSTICS
1. INTRODUCTION
2. GENERAL REQUIREMENTS
2.3.
Additional provisions concerning monitoring requirements
2.4.
Alternative approval
2.4.2.
Small series production
2.5.
Conformity of production
3. PERFORMANCE REQUIREMENTS
3.2.
OBD threshold limits
|
Limit in mg/kWh |
|
|
NOx |
PM Mass |
Phase-in period |
1 500 |
25 |
General requirements |
1 200 |
25 |
|
Limit in mg/kWh |
|
|
NOx |
CO(2) |
phase-in period |
1 500 |
|
general requirements |
1 200 |
|
4. DEMONSTRATION REQUIREMENTS
5. DOCUMENTATION REQUIREMENTS
6. IN USE PERFORMANCE REQUIREMENTS
6.1.
Technical requirements
6.2.
Minimum in-use performance ratio
6.3.
Documentation requirements
6.4.
Statement of OBD in-use Performance compliance
6.5.
Assessment of the in-use performance
Appendix 1
Additional monitoring requirements
1. LOW EGR FLOW
2. EGR COOLER UNDERPERFORMANCE
3. LOW BOOST PRESSURE
4. MALFUNCTIONING INJECTORS
Appendix 2
Performance monitoring
1. GENERAL
2. DEMONSTRATION OF PERFORMANCE MONITORING
2.1.
Approval of the failure classification
2.2.
Approval of the performance monitoring selected by the manufacturer
2.3.
Qualification of a deteriorated component
2.4.
Demonstration of the OBD performance
Appendix 3
Demonstration requirements in case of performance monitoring of a wall-flow diesel particulate filter
1. GENERAL
2. QUALIFICATION TEST
2.1.
Principle
2.2.
Qualification process
2.3.
Demonstration of the OBD performance
Appendix 4
Assessment of the in-use performance of the on-board diagnostic system
1. GENERAL
2. PROCEDURE FOR DEMONSTRATING OBD IN-USE PERFORMANCE
Figure 1
Two OBD engine families within one engine family
Figure 2
Previously demonstrated conformity of an OBD engine family
3. OBD IN-USE PERFORMANCE DATA
4. ENGINE OR VEHICLE SELECTION
4.1.
Engine selection
4.2.
Vehicle selection
4.2.1.
Vehicle segments
4.2.2.
Vehicle qualification
5. IN-USE PERFORMANCE SURVEYS(1)
5.1.
Collection of in-use performance data
5.2.
Assessment of the in-use performance
6. REPORT TO THE APPROVAL AUTHORITY
Appendix 5
Assessment of the in-use performance of the on-board diagnostic system during the phase-in period
1. GENERAL
2. PROCEDURE FOR OBD IN-USE PERFORMANCE ASSESSMENT
2.4.
Data Handling During the Phase-In Period set out in Article 4(7)
3. OBD IN-USE PERFORMANCE DATA
4. VEHICLE AND ENGINE SELECTION
4.1.
Engine selection
4.2.
Vehicle selection
5. IN-USE PERFORMANCE SURVEYS
5.1.
Collection of in-use performance data
5.2.
Assessment of the in-use performance
6. REPORT TO THE APPROVAL AUTHORITY AND THE COMMISSION
Appendix 6
Model of an OBD in-use performance compliance statement
ANNEX XI
EC TYPE-APPROVAL OF REPLACEMENT POLLUTION CONTROL DEVICES AS SEPARATE TECHNICAL UNIT
1. INTRODUCTION
2. GENERAL REQUIREMENTS
2.1.
Marking
2.2.
Documentation
3. EC SEPARATE TECHNICAL UNIT TYPE-APPROVAL MARK
4. TECHNICAL REQUIREMENTS
4.1.
General requirements
4.2.
General durability requirements
4.3.
Requirements regarding emissions
4.3.1.
Outline of procedure for evaluation of emissions
4.3.2.
Procedure for evaluation of emissions performance of a replacement pollution control device
4.3.2.2.
Exhaust gas test with replacement pollution control device
4.3.2.3.
Initial evaluation of the emission of pollutants of engines equipped with replacement pollution control devices
4.3.2.4.
Durability of emissions performance
4.3.2.5.
Exhaust gas test with aged replacement pollution control device
4.3.2.6.
Determination of ageing factor for the replacement pollution control device
4.3.2.7.
Evaluation of the emission of pollutants of engines equipped with replacement pollution control devices
4.3.3.
Replacement pollution control device technology family
4.3.4.
Assessment of the durability of emissions performance of a replacement pollution control device by use of a technology family aging factor
4.3.4.1.
Determination of durability performance of family members
4.4.
Requirements regarding exhaust back-pressure
4.5.
Requirements regarding OBD compatibility (applicable only to replacement pollution control devices intended to be fitted to vehicles equipped with an OBD system)
5. CONFORMITY OF PRODUCTION
5.2.
Special provisions
Appendix 1
MODEL
Information document No …
relating to the EC type-approval of replacement pollution control devices
0. GENERAL
1. DESCRIPTION OF THE DEVICE
Appendix 2
MODEL EC TYPE-APPROVAL CERTIFICATE
(Maximum format: A4 (210 mm × 297 mm))
EC TYPE-APPROVAL CERTIFICATE
SECTION I
SECTION II
Appendix 3
Ageing procedure for evaluation of durability
Category of vehicle in which engine will be installed |
Minimum service accumulation period |
Category N1 vehicles |
|
Category N2 vehicles |
|
Category N3 vehicles with a maximum technically permissible mass not exceeding 16 tonnes |
|
Category N3 vehicles with a maximum technically permissible mass exceeding 16 tonnes |
|
Category M1 vehicles |
|
Category M2 vehicles |
|
Category M3 vehicles of classes I, II, A and B as defined in Annex I to Directive 2001/85/EC, with a maximum technically permissible mass not exceeding 7,5 tonnes |
|
Category M3 vehicles of classes III and B as defined in Annex I to Directive 2001/85/EC with a maximum technically permissible mass exceeding 7,5 tonnes |
|
ANNEX XII
CONFORMITY OF IN-SERVICE ENGINES AND VEHICLES TYPE-APPROVED UNDER DIRECTIVE 2005/55/EC
1. INTRODUCTION
2. PROCEDURE FOR IN-SERVICE CONFORMITY
ANNEX XIII
REQUIREMENTS TO ENSURE THE CORRECT OPERATION OF NO
x
CONTROL MEASURES
1. INTRODUCTION
2. GENERAL REQUIREMENTS
2.1.
Alternative approval
2.2.
Required information
2.3.
Operating conditions
2.4.
Reagent freeze protection
2.4.2.
Heated reagent tank and dosing system
2.4.2.2.
Demonstration
2.4.3.
Non-heated reagent tank and dosing system
3. MAINTENANCE REQUIREMENTS
4. DRIVER WARNING SYSTEM
5. DRIVER INDUCEMENT SYSTEM
5.3.
Low-level inducement system
5.4.
Severe inducement system
6. REAGENT AVAILABILITY
6.1.
Reagent indicator
6.2.
Activation of the driver warning system
6.3.
Activation of the driver inducement system
7. REAGENT QUALITY MONITORING
7.2.
Activation of the driver warning system
7.3.
Activation of the driver inducement system
8. REAGENT CONSUMPTION MONITORING
8.2.
Reagent consumption and dosing activity counters
8.3.
Monitoring conditions
8.4.
Activation of the driver warning system
8.5.
Activation of the driver inducement system
9. MONITORING FAILURES THAT MAY BE ATTRIBUTED TO TAMPERING
9.2.
Monitoring requirements
9.2.2.
EGR valve counter
9.2.3.
Monitoring system counters
9.3.
Activation of the driver warning system
9.4.
Activation of the driver inducement system
Appendix 1
Demonstration requirements
1. GENERAL
Mechanism |
Demonstration elements |
||||||
Warning system activation specified in Section 3 |
|
||||||
Low-level inducement activation specified in Section 4 |
|
||||||
Severe inducement activation specified in Section 5 |
|
2. ENGINE FAMILIES OR OBD ENGINE FAMILIES
Figure 1
Previously demonstrated conformity of an OBD engine family
3. DEMONSTRATION OF THE WARNING SYSTEM ACTIVATION
3.2.
Selection of the failures to be tested
3.3.
Demonstration
4. DEMONSTRATION OF THE INDUCEMENT SYSTEM
4.5.
Demonstration test of the low-level inducement system
4.6.
Demonstration test of the severe inducement system
5. DEMONSTRATION OF THE VEHICLE SPEED LIMITATION FOLLOWING ACTIVATION OF THE SEVERE INDUCEMENT SYSTEM
5.4.
Additional demonstration for confirming the effect of activation of the severe inducement system on a vehicle
Appendix 2
Description of the driver warning and inducement activation and deactivation mechanisms
2. ACTIVATION AND DEACTIVATION MECHANISMS OF THE DRIVER WARNING SYSTEM
Failure type |
DTC status for activation of the warning system |
Poor reagent quality |
confirmed and active |
Low reagent consumption |
potential (if detected after 10 hours), potential or confirmed and active otherwise |
Absence of dosing |
confirmed and active |
Impeded EGR valve |
confirmed and active |
Malfunction of the monitoring system |
confirmed and active |
2.2.1
Erasing of failure information by means of a scan-tool
3. ACTIVATION AND DEACTIVATION MECHANISM OF THE DRIVER INDUCEMENT SYSTEM
4. COUNTER MECHANISM
4.1.
General
4.2.
Principle of counter mechanisms
|
DTC status for first activation of the counter |
Counter value for low-level inducement |
Counter value for severe inducement |
Frozen value held by the counter during the period just after severe inducement |
Reagent quality counter |
confirmed and active |
10 hours |
20 hours |
18 hours |
Reagent consumption counter |
potential or confirmed and active (see Table 1) |
10 hours |
20 hours |
18 hours |
Dosing counter |
confirmed and active |
10 hours |
20 hours |
18 hours |
EGR valve counter |
confirmed and active |
36 hours |
100 hours |
95 hours |
Monitoring system counter |
confirmed and active |
36 hours |
100 hours |
95 hours |
Figure 1
Reactivation and resetting to zero of a counter after a period when its value has been frozen
5. ILLUSTRATION OF THE ACTIVATION AND DEACTIVATION AND COUNTER MECHANISMS
Figure 2
Reagent availability
Figure 3
Filling with poor reagent quality
Figure 4
Failure of the reagent dosing system
Appendix 3
Low-level inducement torque reduction scheme
Appendix 4
Demonstration of correct installation on a vehicle in the case of engines EC type-approved as a separate technical unit
Appendix 5
Access to ‘NO
x
control information’
2. ACCESS METHODS
3. INFORMATION CONTENT
Appendix 6
Demonstration of the minimum acceptable reagent concentration CD
min
ANNEX XIV
MEASUREMENT OF NET ENGINE POWER
1. INTRODUCTION
2. GENERAL
2.2.
Test fuel
2.3.
Engine-driven equipment
ANNEX XV
AMENDMENTS TO REGULATION (EC) No 595/2009
‘ANNEX I
|
Limit values |
|||||||||||||
CO (mg/kWh) |
THC (mg/kWh) |
NMHC (mg/kWh) |
CH4 (mg/kWh) |
NOx (1) (mg/kWh) |
NH3 (ppm) |
PM mass (mg/kWh) |
PM(2) number (#/kWh) |
|||||||
WHSC (CI) |
1 500 |
130 |
|
|
400 |
10 |
10 |
8,0 × 1011 |
||||||
WHTC (CI) |
4 000 |
160 |
|
|
460 |
10 |
10 |
6,0 × 1011 |
||||||
WHTC (PI) |
4 000 |
|
160 |
500 |
460 |
10 |
10 |
(3) |
||||||
|