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Evaluation of a Coupled Organic Rankine Cycle Mild Hybrid Architecture for Long-Haul Heavy-Duty Truck

机译:远程重型卡车耦合有机朗肯循环轻度混合动力体系结构的评估

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摘要

Increasing fuel prizes, future CO2 emission legislation as well as new powertrain architectures are the main factors for truck manufacturers to invest into fuel saving technologies. Especially for long haul heavy duty transport and high mean engine loads, Rankine cycle waste heat recovery can lead to significant fuel savings. In this study transient road cycle simulations are performed to compare different Rankine architectures, coupled to a mild hybrid driveline, using tailpipe heat as heat source and ethanol as working fluid. The results show better performance for the indirect cooling strategy. Furthermore the multi-model proportional integral controller is considered as the best controller to fulfill the requirements about safety and performance.
机译:越来越多的燃油奖励,未来的CO2排放法规以及新的动力总成架构是卡车制造商投资于节省燃料技术的主要因素。尤其是对于长途重型运输和较高的平均发动机负载,朗肯循环余热回收可以节省大量燃料。在这项研究中,使用尾管热作为热源,乙醇作为工作流体,进行了瞬态道路循环仿真,以比较不同的兰金架构与缓和的混合动力传动系统。结果显示间接冷却策略具有更好的性能。此外,多模型比例积分控制器被认为是满足安全性和性能要求的最佳控制器。

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