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首页> 外文期刊>Journal of Electronic Materials >Numerical Investigation for Strengthening Heat Transfer Mechanism of the Tube-Row Heat Exchanger in a Compact Thermoelectric Generator
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Numerical Investigation for Strengthening Heat Transfer Mechanism of the Tube-Row Heat Exchanger in a Compact Thermoelectric Generator

机译:紧凑型热电发电机中管排热交换器传热机理的数值研究

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摘要

According to the basic principle of heat transfer enhancement, a 1-kW compact thermoelectric generator (TEG) is proposed that is suitable for use at high temperatures and high flow speeds. The associated heat exchanger has a tube-row structure with a guide-plate to control the thermal current. The heat exchanger has a volume of 7 L, and the TEG has a mass of 8 kg (excluding the thermoelectric modules (TEMs)). In this paper, the heat transfer process of the tube-row exchanger is modeled and analyzed numerically; and the influences of its structure on the heat transfer and temperature status of the TEMs are investigated. The results show that use of the thin - wall pipes and increase of surface roughness inside the pipes are effective ways to improve the heat transfer efficiency, obtain the rated surface temperature, and make the TEG compact and lightweight. Furthermore, under the same conditions, the calculated results are compared with the data of a fin heat exchanger. The comparison results show that the volume and mass of the tube-row heat exchanger are 19% and 33% lower than those of the fin type unit, and that the pressure drop is reduced by 16%. In addition, the average temperature in the tube-row heat exchanger is increased by 15 degrees C and the average temperature difference is increased by 19 degrees C; the tube-row TEG has a more compact volume and better temperature characteristics.
机译:根据传热增强的基本原理,提出了一种适用于高温和高流速使用的1-kW紧凑的热电发电机(TEG)。相关的热交换器具有带引导板的管排结构以控制热电流。热交换器的体积为7L,TEG的质量为8kg(不包括热电模块(TEM))。在本文中,在数值上建模和分析了管排交换器的传热过程;研究了其结构对温度和温度状态的影响。结果表明,使用薄壁管和管道内表面粗糙度的增加是提高传热效率的有效方法,获得额定表面温度,使TEG紧凑,轻巧。此外,在相同的条件下,将计算结果与翅片热交换器的数据进行比较。比较结果表明,管排热交换器的体积和质量比翅片型单元低19%和33%,压降减少了16%。另外,管排热交换器中的平均温度增加了15摄氏度,平均温差增加了19℃;管排TEG具有更紧凑的体积和更好的温度特性。

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