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Modeling and Analysis of Thermoelectric Generators for Diesel Engine Exhaust Heat Recovery System

机译:柴油机余热回收系统热电发电机的建模与分析

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The paper focuses on the performance of thermoelectric generators (TEGs) in different positions and under different running conditions. Three-dimensional numerical models of two designs of exhaust heat recovery systems were studied in which two kinds of heat exchangers were designed, and their flow and temperature field characteristics were analyzed. Thermoelectric generators were arranged on the upper and lower surfaces of the heat exchanger, and their thermoelectric output performance was investigated under different engine running conditions (i.e., medium load, high load, and full load). The results showed that the surface temperature of the heat exchanger with vortex rods is higher and more uniform than that of the heat exchanger without vortex rods. Although the backpressure increases for the heat exchanger design with the vortex rods, this is in the order of 1,392 Pa in the condition of full load and therefore negligible. One can see that the position of TEGs and diesel engine running conditions greatly impact the performance of TEGs. Compared with the heat exchanger without vortex rods, the heat exchanger with vortex rods could supply a higher open-circuit voltage at the corresponding position. The output characteristics of TEGs are better, as the temperature is higher in a full load condition.
机译:本文重点介绍了热电发电机(TEG)在不同位置和不同运行条件下的性能。研究了两种设计的换热器的三维数值模型,其中设计了两种换热器,并对它们的流场和温度场特性进行了分析。将热电发电机布置在热交换器的上表面和下表面上,并在不同的发动机工况下(即中负荷,高负荷和满负荷)研究其热电输出性能。结果表明,与不带涡流棒的换热器相比,带涡流棒的换热器的表面温度更高,更均匀。尽管对于带有涡流杆的热交换器设计,背压会增加,但在满载情况下,背压约为1392 Pa,因此可以忽略不计。可以看到,TEG的位置和柴油机的运行状况极大地影响了TEG的性能。与不带涡流棒的热交换器相比,带涡流棒的热交换器可以在相应位置提供更高的开路电压。 TEG的输出特性更好,因为在满载条件下温度会更高。

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