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首页> 外文期刊>International Journal of Heat and Mass Transfer >Simulation and experimental studies of R134a flow condensation characteristics in a pump-assisted separate heat pipe
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Simulation and experimental studies of R134a flow condensation characteristics in a pump-assisted separate heat pipe

机译:泵辅助独立热管中R134a流动冷凝特性的模拟和实验研究

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We combine experimental research and numerical simulations to investigate the complex and unknown flow condensation heat transfer process in a pump-assisted separate heat pipe (PASHP) employing R134a. The Chen model and Miiller-Steinhagen-Heck model coincide with the experimental pressure drop and heat transfer, respectively, after comparing three correlations of the pressure drop and four correlations of the heat transfer. After analysing the establishment and selection of a model to simulate the flow condensation characteristics in a PASHP, we conclude that the turbulence model, multiphase flow model, and heat and mass transfer model can be described using the SST k-omega model, VOF model, and Lee model, respectively. The phase transformation factor r = 3000, the simulation results and the Chen correlation are all consistent. The pressure drop and heat transfer coefficient increases with increasing mass flow and vapour quality. The simulation results of the pressure drop and heat transfer coefficient are compared with those of the Chen and Muller-Steinhagen-Heck correlations, respectively, showing satisfactory agreement between the simulated and the calculated values. This research provides a theoretical reference for the selection of the pump, design of the heat exchanger, optimization of the system and study of two-phase flow. (C) 2018 Elsevier Ltd. All rights reserved.
机译:我们将实验研究与数值模拟相结合,以研究采用R134a的泵辅助独立热管(PASHP)中复杂而又未知的流动凝结传热过程。在比较了压降的三个相关性和传热的四个相关性之后,Chen模型和Miiller-Steinhagen-Heck模型分别与实验压降和热传递相吻合。通过分析模型的建立和选择以模拟PASHP中的流冷凝特性,我们得出结论,可以使用SSTk-ω模型,VOF模型来描述湍流模型,多相流模型和传热传质模型,和李模型。相变因子r = 3000,仿真结果与Chen相关性均一致。压降和传热系数随着质量流量和蒸汽质量的增加而增加。将压降和传热系数的仿真结果分别与Chen和Muller-Steinhagen-Heck相关性的仿真结果进行了比较,显示了仿真值与计算值之间的令人满意的一致性。该研究为泵的选择,热交换器的设计,系统的优化以及两相流的研究提供了理论参考。 (C)2018 Elsevier Ltd.保留所有权利。

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