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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Technological analysis and fuel consumption saving potential of different gas turbine thermodynamic configurations for series hybrid electric vehicles
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Technological analysis and fuel consumption saving potential of different gas turbine thermodynamic configurations for series hybrid electric vehicles

机译:串联混合动力电动汽车不同燃气轮机热力学配置的技术分析和燃料消耗潜力

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摘要

Gas turbine systems are among potential energy converters to substitute the internal combustion engine as auxiliary power unit in future series hybrid electric vehicle powertrains. Fuel consumption of these auxiliary power units in the series hybrid electric vehicle strongly relies on the energy converter efficiency and power-to-weight ratio as well as on the energy management strategy deployed on-board. This paper presents a technological analysis and investigates the potential of fuel consumption savings of a series hybrid electric vehicle using different gas turbine-system thermodynamic configurations. These include a simple gas turbine, a regenerative gas turbine, an intercooler regenerative gas turbine, and an intercooler regenerative reheat gas turbine. An energetic and technological analysis is conducted to identify the systems' efficiency and power-to-weight ratio for different operating temperatures. A series hybrid electric vehicle model is developed and the different gas turbine-system configurations are integrated as auxiliary power units. A bi-level optimization method is proposed to optimize the powertrain. It consists of coupling the non-dominated sorting genetic algorithm to the dynamic programming to minimize the fuel consumption and the number of switching ON/OFF of the auxiliary power unit, which impacts its durability. Fuel consumption simulations are performed on the worldwide-harmonized light vehicles test cycle while considering the electric and thermal comfort vehicle energetic needs. Results show that the intercooler regenerative reheat gas turbine-auxiliary power unit presents an improved fuel consumption compared with the other investigated gas turbine systems and a good potential for implementation in series hybrid electric vehicles.
机译:燃气轮机系统是潜在的能量转换器,以将内燃机替代为未来串联混合动力电动车辆的辅助动力单元。串联混合动力电动车辆中这些辅助电源单元的燃料消耗强烈依赖于能量转换器效率和功率重量比以及在板上部署的能量管理策略。本文介绍了使用不同燃气涡轮系统热力学配置的串联混合动力电动汽车燃料消耗节约的潜力。这些包括简单的燃气轮机,再生燃气轮机,中间冷却器再生燃气轮机和中间冷却器再生再生燃气轮机。进行了能量和技术分析,以确定不同操作温度的系统效率和重量比。开发了一个串联混合动力电动车辆模型,并将不同的燃气轮机系统配置集成为辅助电源单元。提出了一种双级优化方法来优化动力总成。它包括将非主导的分类遗传算法耦合到动态编程,以最小化燃料消耗和辅助动力单元的开关的数量,这会影响其耐用性。在考虑电动和热舒适性的电力充沛需求的同时,对全球谐波的轻型车辆测试周期进行燃料消耗模拟。结果表明,与其他调查的燃气轮机系统相比,中间冷却器再生再生燃气涡轮机辅助动力单元提高了燃料消耗,以及串联混合动力电动车辆的良好潜力。

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