首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Exergo-technological explicit methodology for gas-turbine system optimization of series hybrid electric vehicles
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Exergo-technological explicit methodology for gas-turbine system optimization of series hybrid electric vehicles

机译:用于串联混合动力电动汽车的燃气轮机系统优化的Exergo - 技术明确方法

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Significant research efforts have been invested in the automotive industry on hybrid electrified powertrains in order to reduce the dependence of passenger cars on oil. Electrification of powertrains resulted in a wide range of hybrid vehicle architectures. The fuel consumption of these powertrains strongly relies on the energy converter performance, as well as on the energy management strategy deployed on board. This paper investigates the potential of fuel consumption savings of a series hybrid electric vehicle using a gas turbine as an energy converter instead of the conventional internal-combustion engine. An exergo-technological explicit analysis is conducted to identify the best configuration of the gas-turbine system. An intercooled regenerative reheat cycle is prioritized, offering higher efficiency and higher power density than those of other investigated gas-turbine systems. A series hybrid electric vehicle model is developed and powertrain components are sized by considering the vehicle performance criteria. Energy consumption simulations are performed over the Worldwide Harmonized Light Vehicles Test Procedure driving cycle using dynamic programming as the global optimal energy management strategy. A sensitivity analysis is also carried out in order to evaluate the impact of the battery size on the fuel consumption, for self-sustaining and plug-in series hybrid electric vehicle configurations. The results show an improvement in the fuel consumption of 22–25% with the gas turbine as the auxiliary power unit in comparison with that of the internal-combustion engine. Consequently, the studied auxiliary power unit for the gas turbine presents a potential for implementation on series hybrid electric vehicles.
机译:在混合电气牵引力的汽车行业上投入了显着的研究努力,以减少乘用车对油的依赖。电动驱动器的电气化导致各种混合动力车架构架构。这些发电机的燃料消耗强烈依赖于能量转换器性能,以及在船上部署的能量管理策略。本文研究了使用燃气涡轮机作为能量转换器代替传统的内燃机的燃料消耗节省串联混合动力电动车辆的潜力。进行Exergo技术显式分析以识别燃气轮机系统的最佳配置。优先化的再生再生再加热循环,提供比其他调查的气涡轮机系统更高的效率和更高的功率密度。开发了一种串联混合动力电动车辆模型,通过考虑车辆性能标准,提供动力总成部件。通过全球谐波的轻型车辆测试程序驾驶循环进行能耗模拟,使用动态编程作为全球最优能量管理策略。还进行了灵敏度分析,以便评估电池尺寸对燃料消耗对燃料消耗的影响,用于自维持和插入式混合动力电动车辆配置。结果表明,与内燃机的燃气涡轮机为辅助动力单元,燃料消耗的燃料消耗的提高。因此,用于燃气轮机的研究辅助动力单元呈现串联混合动力电动车辆的实现。

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