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Effect of tangled channels on the heat transfer in a printed circuit heat exchanger

机译:缠结通道对印刷电路板换热器中传热的影响

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摘要

The heat exchangers used in thermoelectric power generation are required to achieve an optimal efficiency by comparing heat transfer that is related to the power generation into the consumption of pump power. The main objective of this study is to enhance heat transfer at a lower flow rate using a tangled channel. The newly introduced channel was designed to increase heat transfer through the entangled shape despite the low Reynolds numbers. Both experimental and numerical analyses were used to investigate the thermal-hydraulic characteristics of the present printed circuit heat exchanger (PCHE). The computational fluid dynamics analysis using ANSYS CFX 15.0 successfully predicted the experimental data with average errors of 1.25% and 4.51% for temperature and pressure differences between the inlet and the outlet, respectively. The present PCHE with a tangled channel showed the improvement of heat transfer when the Reynolds number ranges from 1000 to 3000. Based on the numerical calculation, the geometric effect was investigated by using the concept of temperature uniformity. The temperature uniformity in mixing zones might be a reason for the improvement in heat transfer at a relatively low range of Reynolds number.
机译:通过将与发电相关的热传递与泵动力的消耗进行比较,需要用于热电发电的热交换器达到最佳效率。这项研究的主要目的是使用缠结的通道以较低的流量增强传热。尽管雷诺数低,但新设计的通道设计用于增加通过纠缠形状的传热。实验和数值分析均用于研究本印刷电路换热器(PCHE)的热工液压特性。使用ANSYS CFX 15.0进行的计算流体动力学分析成功地预测了实验数据,其入口和出口之间的温度和压力差的平均误差分别为1.25%和4.51%。当雷诺数在1000到3000之间时,当前带有缠结通道的PCHE表现出传热的改善。基于数值计算,使用温度均匀性的概念研究了几何效应。在相对较低的雷诺数范围内,混合区的温度均匀性可能是改善传热的原因。

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