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Development of Advanced Non-Bypass Exhaust Heat Recovery System Using Highly Heat-Conductive SiC Honeycomb

机译:高热导热SiC蜂窝的高级非旁路排气回收系统的开发

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An exhaust heat recovery (EHR) system is an effective and attractive means of improving fuel economy and in-vehicle comfort, especially of hybrid cars in winter. However, many conventional bypass systems, which have a bypass pipe and bypass valve with a thermal actuator, are still large and heavy, and it is necessary not only to effectively improve the heat recovery but also to minimize the size and weight of EHR systems. Sakuma et al. reported new-concept heat exchangers and EHR systems using a highly heat-conductive SiC honeycomb, including a non-bypass system. However, since this non-bypass system always recovers heat from the exhaust gas, its heat recovery performance was set so as not to exceed the cooling capability of the radiator at a high engine load to prevent overheating of the vehicle. Therefore, it is necessary to both reduce the recovered heat at a high engine load or high coolant temperature and improve the recovered heat at a low engine load or low coolant temperature for the non-bypass system. This paper proposes an advanced non-bypass EHR system with a double-layered coolant passage structure for automatically limiting the amount of recovered heat depending on the coolant temperature or engine load instead of a bypass valve mechanism. This advanced system can realize both effective heat recovery in an engine warm-up phase and heat rejection at a high engine load or high coolant temperature. This paper explains the basic concept of the advanced non-bypass EHR system and analyzes vehicle results obtained with this prototype, which showed high heat recovery performance in the cold-start phase and high heat rejection performance at a high engine load.
机译:废热回收(EHR)系统是一种有效而有吸引力的方法,可提高燃油经济性和车载舒适性,特别是冬季混合动力车。然而,许多常规的旁路系统中,其中有一个旁通管和旁通阀,其具有一热致动器,仍然大而重的,并且不仅有效提高了热回收也能EHR系统的尺寸和重量最小化是必要的。 Sakuma等。报告了使用高导热SiC蜂窝的新概念热交换器和EHR系统,包括非旁路系统。然而,由于该非旁路系统总是从废气中恢复热量,因此其热回收性能被设定为不超过散热器在高发动机负载下的冷却能力,以防止车辆过热。因此,必须在高发动机负荷或高冷却剂温度下减少回收的热量,并在低发动机负荷或非旁路系统的低冷却剂温度下改善回收的热量。本文提出了一种具有双层冷却剂通道结构的先进的非旁路EHR系统,用于根据冷却剂温度或发动机负载而不是旁通阀机构自动限制回收的热量。这种先进的系统可以在发动机预热相中实现有效的热量回收,并在高发动机负荷或高冷却剂温度下进行热排出。本文介绍了先进的非旁路EHR系统的基本概念,并分析了用该原型获得的车辆结果,在冷启动相和高热量抑制性能下在高发动机负荷下显示出高热回收性能。

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