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Shape Optimization of a Printed-Circuit Heat Exchanger to Enhance Thermal-Hydraulic Performance

机译:印制电路换热器的形状优化,以提高热液压性能

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Printed circuit heat exchanger (PCHE) is recently considered as a recuperator for the high temperature gas cooled reactor. In this work, the zigzag-channels of a PCHE have been optimized by using three-dimensional Reynolds-Averaged Navier-Stokes (RANS) analysis and response surface approximation (RSA) modeling technique to enhance thermal-hydraulic performance. Shear stress transport turbulence model is used as a turbulence closure. The objective function is defined as a linear combination of the functions related to heat transfer and friction loss of the PCHE, respectively. Three geometric design variables viz., the ratio of the radius of the fillet to hydraulic diameter of the channels, the ratio of wavelength to hydraulic diameter of the channels, and the ratio of wave height to hydraulic diameter of the channels, are used for the optimization. Design points are selected through Latin-hypercube sampling. The optimal design is determined through the RSA model which uses RANS derived calculations at the design points. The results show that the optimum shape enhances considerably the thermal-hydraulic performance than a reference shape.
机译:印刷电路热交换器(PCHE)最近被认为是高温气冷反应堆的换热器。在这项工作中,通过使用三维雷诺平均Navier-Stokes(RANS)分析和响应面近似(RSA)建模技术来优化PCHE的曲折通道,以增强热工液压性能。剪切应力传递湍流模型用作湍流闭合。目标函数定义为分别与PCHE的传热和摩擦损失有关的函数的线性组合。使用三个几何设计变量,即圆角半径与通道水力直径的比率,波长与通道水力直径的比率以及波高与通道水力直径的比率。优化。通过拉丁超立方体采样选择设计点。最佳设计是通过RSA模型确定的,该模型在设计点使用RANS得出的计算结果。结果表明,最佳形状比参考形状显着提高了热工液压性能。

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