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Design of A Fuel Vapor-Containment System (FVS) to Meet Zero Evaporative Emissions Requirements in a Hybrid Electric Vehicle

机译:燃料蒸汽容纳系统(FVS)的设计,以满足混合动力电动车辆的零蒸发排放要求

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Generally Hybrid Electrical Vehicles (HEV's) tend to have difficulty with regard to evaporative emissions because they have less capability of purging canisters compared with that of conventional systems. Toyota has developed a new fuel system that can address this difficulty and enables outstanding performance for the new-generation HEV. The fuel system, called the "Fuel Vapor-containment System (FVS)," consists of newly developed or redesigned components, such as a high-strength fuel tank, a Fuel Vapor-containment Valve (FVV), refueling canister and a purge buffer as well as newly defined controls of the components for the vehicle. The fuel tank is sealed while a vehicle is parked and fuel vapor does not flow into the canister by control of the FVV, except during refueling events. Therefore, HEV's do not have to ensure as much as purge capacity to achieve the necessary lower evaporative requirements. As a result, an HEV can provide low fuel consumption and environmental-friendliness which meets Super Ultra Low Emission Vehicle (SULEV) exhaust emissions requirements and zero evaporative emissions standards in California.
机译:通常,混合动力电气(HEV)倾向于对蒸发排放难以困难,因为与常规系统相比,它们具有较少的吹扫罐的能力。丰田开发了一种新的燃料系统,可以解决这种困难,并为新一代HEV实现出色的性能。燃料系统称为“燃料蒸汽容纳系统(FVS)”,由新开发或重新设计的部件组成,例如高强度燃料箱,燃料蒸汽容纳阀(FVV),加油罐和吹扫缓冲液除了用于车辆的组件的新定义控制。除了在加油事件期间,燃料箱被停放并且燃料蒸汽不会通过控制而无法控制罐流入罐。因此,HEV不必确保尽可能多地净化能力以实现必要的较低蒸发要求。结果,HEV可以提供低燃料消耗和环境友好性,这些友好符合Super Ultra低排放车辆(Sulev)废气排放要求和加利福尼亚州的零蒸发排放标准。

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