首页> 外文期刊>Progress in computational fluid dynamics >Fluid flow and heat transfer characteristics within a rectangular microchannel array of different manifold shapes - modelisation and optimisation using CFD and response surface methodology
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Fluid flow and heat transfer characteristics within a rectangular microchannel array of different manifold shapes - modelisation and optimisation using CFD and response surface methodology

机译:不同歧管形状的矩形微通道阵列中的流体流动和传热特性-使用CFD和响应面方法进行建模和优化

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>Different manifold shapes of microchannel device are investigated for the pressure drop characteristics under the effect of varying microchannel depth, width and spacing. The response surface methodology is applied to optimise the operating conditions of different microchannel systems. Four operating parameters, the channel width, depth, spacing and the inlet Reynolds number are considered in this study. The individual effects of these operating parameters and the combined effects of multiple operating conditions on pressure drop characteristics are examined using CFD. The semi-elliptical manifold shapes results the high level of fluid flow uniformity within microchannels and lower pressure drop. The maximum percentage reduction in the pressure drop across the microchannel device is 70%, obtained for semi-elliptical manifold shape as compared to other. The heat transfer analysis is also carried out in the extent of the study.
机译:在不同的微通道深度,宽度和间距的影响下,研究了微通道装置的不同歧管形状的压降特性。应用响应面方法来优化不同微通道系统的操作条件。在这项研究中考虑了四个操作参数,通道宽度,深度,间距和入口雷诺数。使用CFD检查了这些运行参数的个别影响以及多种运行条件对压降特性的综合影响。半椭圆形歧管形状导致微通道内的流体流动均匀性高,并且压降降低。与其他相比,半椭圆形歧管形状的微通道设备上的压降最大降低百分比为70%。在研究范围内也进行了传热分析。

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