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首页> 外文期刊>International Journal of Thermal Sciences >A distributed parameter model and its application in optimizing the plate-fin heat exchanger based on the minimum entropy generation
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A distributed parameter model and its application in optimizing the plate-fin heat exchanger based on the minimum entropy generation

机译:基于最小熵产生的分布参数模型及其在板翅式换热器优化中的应用

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摘要

A general three-dimensional distributed parameter model (DPM) was developed for designing the platefin heat exchanger (PFHE). The proposed model, which allows for the varying local fluid thermophysical properties inside the flow path, can be applied for both dry and wet working conditions by using the uniform enthalpy equations. The grids in the DPM were generated to match closely the flow passage of the heat exchanger. The classical correlations of the heat transfer and the flow friction were adopted to avoid solving the differential equations. Consequently, the computation burden of DPM becomes significantly less than that of the Computational Fluid Dynamics method. The optimal design of a PFHE based on the DPM was performed with the entropy generation minimization taken into consideration. The genetic algorithm was employed to conduct the optimization due to its robustness in dealing with complicated problems. The fin type and fin geometry were selected optimally from a customized fin database. The PFHE included in an environmental control system was designed by using the proposed approach in this study. The cooling performance of the optimal PFHE under both dry and wet conditions was then evaluated.
机译:开发了通用的三维分布参数模型(DPM),用于设计板翅式换热器(PFHE)。所提出的模型允许在流动路径内改变局部流体的热物理性质,通过使用均匀的焓方程,可以将其应用于干式和湿式工作条件。 DPM中的栅格生成为紧密匹配热交换器的流路。为了避免求解微分方程,采用了传热和流动摩擦的经典关系式。因此,DPM的计算负担变得明显小于计算流体动力学方法的负担。基于DPM的PFHE的最佳设计是在考虑了熵产生最小化的情况下进行的。由于遗传算法在处理复杂问题上的鲁棒性,因此采用遗传算法进行优化。从定制的鳍数据库中最佳选择了鳍的类型和几何形状。通过使用本研究中提出的方法设计了环境控制系统中包含的PFHE。然后评估了最佳PFHE在干燥和潮湿条件下的冷却性能。

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