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Modeling of hybrid vehicle fuel economy and fuel engine efficiency.

机译:混合动力汽车的燃油经济性和燃油发动机效率建模。

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"Near-CV" (i.e., near-conventional vehicle) hybrid vehicles, with an internal combustion engine, and a supplementary storage with low-weight, low-energy but high-power capacity, are analyzed. This design avoids the shortcoming of the "near-EV" and the "dual-mode" hybrid vehicles that need a large energy storage system (in terms of energy capacity and weight). The small storage is used to optimize engine energy management and can provide power when needed. The energy advantage of the "near-CV" design is to reduce reliance on the engine at low power, to enable regenerative braking, and to provide good performance with a small engine.; The fuel consumption of internal combustion engines, which might be applied to hybrid vehicles, is analyzed by building simple analytical models that reflect the engines' energy loss characteristics. Both diesel and gasoline engines are modeled. The simple analytical models describe engine fuel consumption at any speed and load point by describing the engine's indicated efficiency and friction. The engine's indicated efficiency and heat loss are described in terms of several easy-to-obtain engine parameters, e.g., compression ratio, displacement, bore and stroke. Engine friction is described in terms of parameters obtained by fitting available fuel measurements on several diesel and spark-ignition engines. The engine models developed are shown to conform closely to experimental fuel consumption and motored friction data.; A model of the energy use of "near-CV" hybrid vehicles with different storage mechanism is created, based on simple algebraic description of the components. With powertrain downsizing and hybridization, a "near-CV" hybrid vehicle can obtain a factor of approximately two in overall fuel efficiency (mpg) improvement, without considering reductions in the vehicle load.
机译:分析了具有内燃机和具有低重量,低能量但高功率容量的辅助存储器的“近CV”(即,接近常规的车辆)混合动力车辆。这种设计避免了需要大型储能系统(就能量容量和重量而言)的“近电动汽车”和“双模式”混合动力汽车的缺点。小型存储设备用于优化发动机能量管理,并在需要时提供动力。 “ Near-CV”设计的能源优势在于减少了低功率时对发动机的依赖,实现了再生制动,并为小型发动机提供了良好的性能。通过建立反映发动机能量损失特性的简单分析模型,可以分析可能应用于混合动力汽车的内燃机的燃油消耗。柴油发动机和汽油发动机均已建模。简单的分析模型通过描述发动机指示的效率和摩擦来描述在任何速度和负载点的发动机燃油消耗。发动机指示的效率和热量损失是通过几个易于获取的发动机参数来描述的,例如压缩比,排量,缸径和冲程。根据通过将可用的燃油测量值拟合到几个柴油和火花点火发动机上获得的参数来描述发动机摩擦。显示开发的发动机模型与实验燃料消耗和电动摩擦数据非常吻合。基于组件的简单代数描述,创建了具有不同存储机制的“近CV”混合动力汽车的能源使用模型。借助动力总成的小型化和混合动力,“近CV”混合动力汽车在总体燃油效率(mpg)改善方面可获得大约两倍的倍数,而无需考虑减少车辆负荷。

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