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COPERT 4 Training (7. Advanced) 1 COPERT 4 Training 7. Advanced methodology elements
COPERT 4 Training (7. Advanced) 2 HDV Vehicle loading effects Example: Urban bus midi <15t Euro 3 COPERT Default is 50% Loading
COPERT 4 Training (7. Advanced) 3 Slope (gradient) effect for HDVs Example: Articulated truck 50-60t Euro 2
COPERT 4 Training (7. Advanced) 4 Number of axles in HDVs Tyre wear for HDVs: The user may determine the number of axles per HDV category
COPERT 4 Training (7. Advanced) 5 Emission degradation for PCs & LDVs Input is ‘Cumulative’ mileage
COPERT 4 Training (7. Advanced) 6 Application of mileage correction Corrected HEF = Base HEF × MC
COPERT 4 Training (7. Advanced) 7 Cold start distance E COLD = bc · · N · M · e HOT, BASE · (e COLD /e HOT -1) The user may change the bc value, depending on the technology level
COPERT 4 Training 3. Activity Data – Beginner’s Guide.
COPERT 4 Training 2. General Methodology. 2 Vehicle Categories Passenger Cars Light Duty Vehicles Heavy Duty Vehicles Mopeds Motorcycles.
COPERT 4 Training 6. GHG Emissions. COPERT 4 Training (6. GHG) 2 Fuel Sold (t) Methodology: Algorithm (Diesel) Fossil Diesel Biodiesel VKT Travelled Diesel.
COPERT 4 Training 4. NOx Emissions. COPERT 4 Training (4. NOx) 2 Projected emission factors Emission reductions for future vehicle technologies generally.
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UNFCCC Secretariat, Sustainable Development Mechanisms (SDM) Lambert Schneider, Team Leader Methodologies Development & Improvement Tool to determine emissions.
WATER TRANSPORT The vehicles that travel in water are called water transport. LAND TRANSPORT The vehicles that travel through road are called land transport.
Dimitris Gkatzoflias EMISIA S.A. Thessaloniki Dimitris Gkatzoflias EMISIA S.A.
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