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首页> 外文期刊>Journal of thermal analysis and calorimetry >A novel technique to enhance thermal performance of a thermoelectric cooler using phase-change materials
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A novel technique to enhance thermal performance of a thermoelectric cooler using phase-change materials

机译:一种新型技术,用于使用相变材料提高热电冷却器的热性能

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摘要

In the present work, a novel technique has been developed to enhance the thermal performance of a thermoelectric cooler (TEC) by integrating with phase-change material (PCM). The PCM has been integrated at the hot side of the thermoelectric cooler to maintain constant and relatively low temperature. The study has been carried out with variable geometric parameters of the heat sink, variable cooling load conditions, variable input currents to the TEC and with different PCMs. The results show that there is a significant reduction in both hot and cold side temperatures of the thermoelectric cooler with the use of PCM. For a typical operating condition in the TEC with two thermocouples (2 mm x 2 mm x 3 mm each) under cooling load of 0.03 W and convective heat transfer coefficient of 5 Wm(-2) K-1, the hot and cold side temperatures of the TEC have been reduced from 52 to 30 degrees C and 25 to 12 degrees C, respectively, with the use of PCM. The coefficient of performance of the TEC integrated with PCM has been estimated and it has been found to be 30% higher than the TEC without PCM for a cooling load of 0.05 W. Moreover, the thermal performance of TEC has been studied with variable fill volume of PCM in the heat sink. It has been found that the increase in fill volume of PCM increases the thermal performance of the TEC. This study has been carried out with different PCMs and similar performance enhancements have been observed.
机译:在本作工作中,已经开发了一种新颖的技术来通过与相变材料(PCM)集成来提高热电冷却器(TEC)的热性能。 PCM已经集成在热电冷却器的热侧,以保持恒定和相对低的温度。该研究已经进行了散热器的可变几何参数,可变冷却负载条件,可变输入电流与TEC和不同的PCM。结果表明,热电冷却器的热和冷侧温度随着使用PCM而显着降低。对于TEC中的典型操作条件,在冷却负载下具有两个热电偶(每个热电偶2mm×2mm×3mm),冷却载荷为0.03W,对流传热系数为5wm(-2)k-1,冷热侧温度通过使用PCM,TEC分别从52到30度C和25至12摄氏度降低。已经估计了与PCM集成的TEC的性能系数,并且已经发现比没有PCM的TEC为0.05W的PCM的TEC高30%。此外,已经使用可变填充体积进行了TEC的热性能PCM在散热器中。已经发现,PCM的填充量的增加会增加TEC的热性能。本研究已经采用不同的PCM进行,并且已经观察到类似的性能增强。

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