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首页> 外文期刊>International Journal of Automotive Technology >THERMAL DESIGN OF AUTOMOBILE EXHAUST BASED THERMOELECTRIC GENERATORS: OBJECTIVES AND CHALLENGES
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THERMAL DESIGN OF AUTOMOBILE EXHAUST BASED THERMOELECTRIC GENERATORS: OBJECTIVES AND CHALLENGES

机译:基于汽车排气的热电发电机的热设计:目标和挑战

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摘要

The potential for thermoelectric power generation (via waste heat recovery onboard automobiles) to displace alternators and/or provide additional charging to a vehicle battery pack has increased with recent advances in thermoelectric material processing. In gasoline fueled vehicles (GFVs), about 40% of fuel energy is wasted in exhaust heat, while a smaller amount of energy (30%) is ejected through the engine coolant. Therefore, exhaust-based thermoelectric generators (ETEG) have been a focus for GFV applications since the late 1980s. The conversion efficiency of modern thermoelectric materials has increased more than three-fold in the last two decades; however, disputes as to the thermal design of ETEG systems has kept their overall efficiency at limited and insufficient values. There are many challenges in the thermal design of ETEG systems, such as increasing the efficiency of the heat exchangers (hot box and cold plate), maintaining a sufficient temperature difference across the thermoelectric modules during different operating conditions, and reducing thermal losses through the system as a whole. This paper focuses on a review of the main aspects of thermal design of ETEG systems through various investigations performed over the past twenty years. This paper is organized as follows: first, the construction of a typical ETEG is described. The heat balance and efficiency of ETEG are then discussed. Then, the third section of this paper emphasizes the main objectives and challenges for designing efficient ETEG systems. Finally, a review of ETEG research activities over the last twenty years is presented to focus on methods used by the research community to address such challenges.
机译:随着热电材料处理的最新进展,产生热电发电(通过汽车上的废热回收)替代交流发电机和/或向车辆电池组提供额外充电的潜力已经增加。在以汽油为燃料的车辆(GFV)中,约40%的燃料能量被浪费在废热中,而较少的能量(30%)通过发动机冷却剂排出。因此,自1980年代末以来,基于排气的热电发电机(ETEG)一直是GFV应用的重点。在过去的二十年中,现代热电材料的转换效率提高了三倍多;然而,关于ETEG系统的热设计的争论使它们的整体效率处于有限和不足的水平。 ETEG系统的热设计面临许多挑战,例如提高热交换器(热箱和冷板)的效率,在不同的运行条件下保持热电模块之间足够的温差以及减少系统的热损失作为一个整体。本文着重于通过过去二十年中进行的各种调查对ETEG系统的热设计的主要方面进行回顾。本文的组织如下:首先,描述典型的ETEG的构造。然后讨论了ETEG的热平衡和效率。然后,本文的第三部分强调设计高效ETEG系统的主要目标和挑战。最后,本文对ETEG在过去20年中的研究活动进行了回顾,重点关注研究界用于应对此类挑战的方法。

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