Hydrogen engine (H2-ICE) and fuelcell for transport application
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Descriptif
Discuss future zero emission powertrain mix (H2-ICE vs FCEV vs BEV): integration constraints, infrastructures, well to wheel efficiency vs energy mix, TCO approach. Description of the H2-ICE architectures, components, control strategies, with focus on sensors and emissions levels. Overview of fuelcell powertrain.
Évaluation
Validation assessments with feedback from the trainer are carried out as and when and at the end of the session, in the form of online MCQ
Intervenants
- Gauthier QUENEY
Modalités
présentiel
Programme
Context
- CO2 targets in Europe and Worldwide
- Powertrain mix – Well-to-wheel efficiency analysis
- Hydrogen challenge: Production
- Storage / Distribution
- Safety at vehicle level (materials compatibility)
- H2-ICE
- Combustion: lambda, stoichiometry, ignition, exhaust gas recirculation, RPM
- Torque (+ sensors)
- Air-loop: Supercharging, Crankcase ventilation (+sensors)
- Fuel supply + injection strategies (+sensors)
- Aftertreatment + Emissions overview (+sensors)
- Exemples (Toyota, KEYOU…)
- Fuelcell
- Cell
- stack quick overview (Toyota Mirai & Hyundai Nexo examples)
- System description (+ sensors) and integration into a vehicle (cooling loop, external air loop) (+ sensors)
- Vehicle electronic architectures & transmission (+sensors)