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首页> 外文期刊>International Journal of Heat and Mass Transfer >Optimization of air-water microchannel heat exchanger using response surface methodology
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Optimization of air-water microchannel heat exchanger using response surface methodology

机译:利用响应面法优化空气微通道热交换器

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Multivariate optimization of the air-water heat exchanger with microchannel coil has been presented in this paper. The effects of four geometry parameters, i.e. fin pitch, microchannel flat tube transversal row pitch, number of small channels and partition wall thickness, on heat transfer rate per volume and mass, pressure drops on air and water side, heat transfer efficiency and rate of compactness have been examined using the Response Surface Methodology. Data set, composed of 27 different geometry models, has been prescribed using Box-Behnken design method. Experimentally validated, 3D mathematical model and numerical procedure have been used for numerical simulations. Fluid flow and heat transfer simulations have been performed using CFD solver FLUENT. Numerical results have been employed to calculate the objective function responses. Obtained contour plots of the objective functions have been shown for various setups. According to objective function results, nonlinear regression models (polynomial functions) have been derived and the Genetic Algorithm has been used to obtain optimal setup. The comparison of results has been given, followed by discussion and conclusions.
机译:本文提出了微通道线圈的空气热交换器的多变量优化。四个几何参数的效果,即翅片间距,微通道扁管横向排沥青,小通道数量和隔壁厚度,对每体积和质量的传热率,压力下降,传热效率和速率已经使用响应面方法检查了紧凑性。数据集由27种不同的几何模型组成,已使用Box-Behnken设计方法规定。实验验证,3D数学模型和数值程序已用于数值模拟。使用CFD求解器流畅进行流体流动和传热模拟。已经采用数值结果来计算目标函数反应。已经显示了所获得的目标函数的轮廓图,以用于各种设置。根据目标函数结果,已导出非线性回归模型(多项式函数),并且遗传算法已被用于获得最佳设置。结果进行了比较,然后进行了讨论和结论。

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