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Parametric study of a thermoelectric generator system for exhaust gas energy recovery in diesel road freight transportation

机译:柴油公路货运中用于废气能量回收的热电发电机系统的参数研究

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摘要

A parametric study and optimization approaches of a thermoelectric generator (TEG) for the recovery of energy from the exhaust gas in Diesel vehicles used in freight transport is reported. The TEG is installed in the tailpipe of a commercial vehicle (3.5 tonnes) and a heavy-duty vehicle (40 tonnes). The exhaust gas is used as the heat source and the cooling water as the heat sink. Two different heat exchanger configurations are considered: plain fins and offset strip fins. The influence of the height, length and spacing of the fins on the electrical and net power is analysed for the fixed width and length of the TEG. The influence of the length and width of the TEG and of the height of the thermocouple legs is also investigated. According to the criteria used in this study, plain fins are the best choice, yielding a maximum electrical power of 188 W for the commercial vehicle and 886 W for the heavy-duty vehicle. The best recovery efficiency is about 2%, with an average thermoelectric material efficiency of approximately 4.4%, for the light-duty vehicle. Accordingly, there is significant room for further improvement and optimisation based on the thermoelectric modules and the system design. (C) 2016 Elsevier Ltd. All rights reserved.
机译:报道了一种热电发电机(TEG)的参数研究和优化方法,用于从货运中使用的柴油车的废气中回收能量。 TEG安装在商用车(3.5吨)和重型车(40吨)的排气管中。废气用作热源,而冷却水用作散热器。考虑了两种不同的热交换器配置:普通翅片和偏置条形翅片。对于TEG的固定宽度和长度,分析了散热片的高度,长度和间距对电功率和净功率的影响。还研究了TEG的长度和宽度以及热电偶支腿的高度的影响。根据本研究中使用的标准,平片是最佳选择,商用车的最大功率为188 W,重型车的最大功率为886W。对于轻型车辆,最佳的回收效率约为2%,平均热电材料效率约为4.4%。因此,基于热电模块和系统设计,存在很大的进一步改进和优化的空间。 (C)2016 Elsevier Ltd.保留所有权利。

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