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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >A review of car waste heat recovery systems utilising thermoelectric generators and heat pipes
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A review of car waste heat recovery systems utilising thermoelectric generators and heat pipes

机译:利用热电发电机和热管的汽车废热回收系统综述

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摘要

The internal combustion engine (ICE) does not efficiently convert chemical energy into mechanical energy. A majority of this energy is dissipated as heat in the exhaust and coolant. Rather than directly improving the efficiency of the engine, efforts are being made to improve the efficiency of the engine indirectly by using a waste heat recovery system. Two promising technologies that were found to be useful for this purpose were thermoelectric generators (TEGs) and heat pipes. Both TEGs and heat pipes are solid state, passive, silent, scalable and durable. The use of heat pipes can potentially reduce the thermal resistance and pressure losses in the system as well as temperature regulation of the TEGs and increased design flexibility. TEGs do have limitations such as low temperature limits and relatively low efficiency. Heat pipes do have limitations such as maximum rates of heat transfer and temperature limits. When used in conjunction, these technologies have the potential to create a completely solid state and passive waste heat recovery system. (C) 2015 The Authors. Published by Elsevier Ltd.
机译:内燃机(ICE)不能有效地将化学能转换为机械能。这些能量的大部分作为热量散发在废气和冷却液中。并非直接提高发动机的效率,而是通过使用废热回收系统来间接提高发动机的效率。被发现可用于此目的的两项有前途的技术是热电发电机(TEG)和热管。 TEG和热管都是固态的,被动的,无声的,可伸缩的和耐用的。使用热管可以潜在地减少系统中的热阻和压力损失,以及TEG的温度调节,并提高设计灵活性。 TEG确实有一些限制,例如低温限制和相对较低的效率。热管确实有一些限制,例如最大的热传递速率和温度限制。当结合使用时,这些技术有可能创建一个完全固态的被动废热回收系统。 (C)2015作者。由Elsevier Ltd.发布

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