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Second law analysis on the heat transfer of the horizontal concentric tube heat exchanger

机译:水平同心管式换热器传热的第二定律分析

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摘要

In the present study, the theoretical and experimental results of the second law analysis on the heat transfer and flow of a horizontal concentric tube heat exchanger are presented. The experiments setup are designed and constructed for the measured data. Hot water and cold water are used as working fluids. The test runs are done at the hot and cold water mass flow rates ranging between 0.02 and 0.20 kg/s and between 0.02 and 0.20 kg/s, respectively. The inlet hot water and inlet cold water temperatures are between 40 and 50 ℃, and between 15 and 20 ℃, respectively. The effects of the inlet conditions of both working fluids flowing through the heat exchanger on the heat transfer characteristics, entropy generation, and exergy loss are discussed. The mathematical model based on the conservation equations of energy is developed and solved by the central finite difference method to obtain temperature distribution, entropy generation, and exergy loss. The predicted results obtained from the model are validated by comparing with the present measured data. There is reasonable agreement from the comparison between predicted results and those from the measured data.
机译:在本研究中,给出了关于水平同心管式换热器传热和流动的第二定律分析的理论和实验结果。实验设置是针对测量数据而设计和构造的。热水和冷水用作工作流体。分别在0.02和0.20 kg / s之间以及0.02和0.20 kg / s之间的热水和冷水质量流量下进行测试。入口热水和入口冷水温度分别在40至50℃和15至20℃之间。讨论了流经热交换器的两种工作流体的入口条件对传热特性,熵的产生和(火用)损失的影响。利用中心有限差分法建立并求解了基于能量守恒方程的数学模型,从而获得了温度分布,熵的产生和火用损失。通过与当前测量数据进行比较,可以验证从模型获得的预测结果。通过比较预测结果和测量数据可以得出合理的共识。

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