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Energy harvesting performance of hexagonal shaped thermoelectric generator for passenger vehicle applications: An experimental approach

机译:乘用车用六角形热电发电机的能量收集性能:一种实验方法

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In this study, the waste heat recovery performance of a hexagonal thermoelectric generator (TEG) was investigated experimentally. Based on the system configuration and dimensions, a total of 18 thermoelectric modules (TEMs) were used for thermal energy harvesting. The internal finned structures of the hexagonal TEG were placed on the inner surface of the exhaust gas channel, in consideration of the thermal resistance and friction factor, in order to augment the heat transfer from the exhaust gas to the thermoelectric modules (TEMs), under various operating conditions. The surface of the TEMs was positioned on the hexagonal-shaped exhaust gas channel surface, whereas the other surface of the TEMs was maintained cool by a set of coolers through which the engine coolant flowed. The coolant line was modified in order to induce a total coolant flow of 10 LPM at 353 K from a coolant controller to the hexagonal TEG. In this study, the assembled hexagonal TEG was installed in the middle of the exhaust gas pipe of the internal combustion engine manufactured for hybrid electric vehicles, and was used as the heat source. The waste heat recovery performance of the hexagonal TEG was evaluated by considering eight engine-operating conditions under which the automotive vehicles were most frequently driven. The output power of the hexagonal TEG tended to increase with the increase in engine speed and load, and ranged between 21.2 and 98.8 W, which corresponded to a conversion efficiency of similar to 1.3-2.6%. An acceptable maximum pressure drop across the hexagonal TEG of similar to 2.1 kPa was observed for the maximum exhaust gas flow rate condition.
机译:在这项研究中,实验研究了六边形热电发电机(TEG)的废热回收性能。根据系统配置和尺寸,总共使用18个热电模块(TEM)进行热能收集。考虑到热阻和摩擦系数,将六边形TEG的内部翅片结构放置在废气通道的内表面上,以增加从废气到热电模块(TEM)的热传递。各种运行条件。 TEM的表面位于六边形排气通道表面上,而TEM的另一个表面则通过一组冷却器保持冷却,发动机冷却剂从中流过。修改了冷却液管线,以便在353 K时从冷却液控制器流向六边形TEG的总冷却液流量为10 LPM。在这项研究中,将组装好的六角形TEG安装在混合动力汽车制造的内燃机的排气管中间,并用作热源。六边形TEG的废热回收性能通过考虑最频繁驾驶汽车的八个发动机运行条件进行评估。六边形TEG的输出功率趋于随发动机转速和负载的增加而增加,范围在21.2和98.8 W之间,相当于大约1.3-2.6%的转换效率。对于最大排气流量条件,在六边形TEG上可接受的最大压降约为2.1 kPa。

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