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Fuel Consumption Saving Potential of Stirling Machine on Series Parallel Hybrid Electric Vehicle: Case of the Toyota Prius

机译:串行混合动力电动车上斯特林机的燃料消耗节约潜力:丰田普锐斯的案例

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Investigations on alternative fuels and new hybrid powertrain architectures have recently undergone significant efforts in the automotive industry, in attempt to reduce carbon emissions from passenger cars. The use of these fuels presents a potential for re-emerging the deployment of external combustion non-conventional engines in automotive applications, such as the Stirling engines, especially under the current development context of powertrain electrification. This paper investigates the potential of fuel consumption savings of a series-parallel hybrid electric vehicle (SPHEV) using a Stirling machine as fuel converter. An exergo-technological explicit analysis is conducted to identify the Stirling system configuration presenting the best compromise between high efficiency and automotive implementation constraints. The Stirling engine with combustion chamber preheater is prioritized. A SPHEV model is developed based on the Prius power-split hybrid electric architecture. Energy consumption simulations are performed on the worldwide-harmonized light vehicles test cycle (WLTC) using dynamic programing as global optimal energy management strategy. Results show improved fuel consumption performance of the Stirling machine compared to the ICE. In addition, the Stirling offers other intrinsic advantages such as low noise and vibration operation and mainly multi-fuel use capability. Consequently, the studied Stirling presents a potential for implementation on SPHEVs.
机译:替代燃料和新的混合动力系架构的调查最近在汽车行业中经历了大量努力,以减少乘用车的碳排放。这些燃料的使用呈现了重新出现在汽车应用中的外部燃烧非传统发动机的部署,例如斯特林发动机,尤其是在动力总成电气化的当前显影背景下。本文通过作为燃料转换器来调查使用斯特林机的串行混合动力电动车(SPHEV)的燃料消耗节省的潜力。进行EXERGO技术显式分析以确定斯特林系统配置,呈现高效率和汽车实现约束之间的最佳折衷。优先处理具有燃烧室预热器的斯特林发动机。基于Prius Power-Splity混合动力电动架构开发了SPHEV模型。能耗模拟在全球谐波的轻型车辆测试周期(WLTC)上进行了使用动态编程作为全局最优能量管理策略。结果表明,与冰相比,斯特林机的燃油消耗性能提高。此外,斯特林还提供了其他内在的优点,例如低噪声和振动操作,主要是多燃料使用能力。因此,所研究的斯特林呈现在SPHEV上的实现。

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