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Optimization and application of Stirling engine for waste heat recovery from a heavy-duty truck engine

机译:斯特林发动机用于重型卡车发动机余热回收的优化与应用

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摘要

The requirements for cleaner engines and less fuel consumption force vehicle manufacturers to investigate new technologies on recovering from losses. As the main contributor to losses is the waste heat, studies are carried out to convert the waste heat to mechanical work. In this paper, an evaluation of Stirling engines is presented for waste heat recovery (WHR) from exhaust gases of a heavy-duty truck diesel engine. Maximum theoretical dimensionless shaft work for three types of Stirling engines are calculated and compared by optimizing selected parameters with a new dimensionless method. Results are used to size a WHR system that utilizes the thermal power of a commercial truck exhaust gas. Calculations done with exhaust gas temperatures measured during road tests show that, the WHR system with Beta-type Stirling engine is more effective than Alpha and Gamma types due to its higher power density. The WHR system presented provides more than 1.3% of ICE power output and about 1% reduction in fuel consumption, which offers Stirling engine as a reasonable option for WHR on heavy-duty truck engine.
机译:对更清洁的发动机和更少的油耗的要求迫使车辆制造商研究新技术以从损失中恢复。由于造成损失的主要因素是废热,因此进行了研究以将废热转换为机械功。在本文中,对斯特林发动机进行了评估,以评估重型卡车柴油机废气中的废热回收(WHR)。通过使用新的无量纲方法优化所选参数,计算并比较了三种斯特林发动机的最大理论无量纲轴功。结果用于确定WHR系统的大小,该系统利用了商用卡车废气的热能。根据在路试期间测量的废气温度进行的计算表明,配备Beta型斯特林发动机的WHR系统比Alpha和Gamma型更有效,因为它具有更高的功率密度。提出的WHR系统可提供超过1.3%的ICE功率输出,并减少约1%的燃油消耗,这使斯特林发动机成为重型卡车发动机WHR的合理选择。

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