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Multi-objective shape optimization of double pipe heat exchanger with inner corrugated tube using RSM method

机译:基于RSM方法的内波纹管双管换热器多目标形状优化

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Integrated a fully developing three-dimensional heat transfer and flow model, a multi-objective optimization aims to fulfill the geometric design for double-tube heat exchangers with inner corrugated tube is investigated in this work with RSM. Dimensionless corrugation pitch (p/D), dimensionless corrugation height (HID), dimensionless corrugation radius (r/D) and Reynolds number (Re) are considered as four design parameters. Considering the process parameters, the characteristic numbers involving heat transfer characteristic, resistance characteristic and overall heat transfer performance calculated by CFD, and are served as objective functions to the RSM (Nu(c), f(c), Nu(c)/Nu(s), f(c)/f(s) and eta in this paper). The results of optimal designs are a set of multiple optimum solutions, called 'Pareto optimal solutions'. It reveals the identical tendency of Nu(c)/Nu(s) and f(c)/f(s) reflecting the conflict between them that means augmenting the heat transfer performance with various design parameters in the optimal situation inevitably sacrificed the increase of flow resistance. According to the Pareto optimal curves, the optimum designing parameters of double pipe heat exchanger with inner corrugated tube under the constrains of Nu(c)/Nu(s) >= 1.2 are found to be P/D = 0.82, H/D = 0.22, r/D = 0.23, Re = 26,263, corresponding to the maximum value of eta = 1.12. 2014 Elsevier Masson SAS. All rights reserved.
机译:结合全面开发的三维传热和流动模型,利用RSM对多目标优化进行了研究,以实现带有内波纹管的双管换热器的几何设计。无量纲波纹间距(p / D),无量纲波纹高度(HID),无量纲波纹半径(r / D)和雷诺数(Re)被视为四个设计参数。考虑到工艺参数,由CFD计算出的涉及传热特性,电阻特性和整体传热性能的特征数将作为RSM的目标函数(Nu(c),f(c),Nu(c)/ Nu (s),f(c)/ f(s)和eta)。最优设计的结果是一组多个最优解,称为“帕累托最优解”。它揭示了Nu(c)/ Nu(s)和f(c)/ f(s)相同的趋势,反映了它们之间的冲突,这意味着在最佳情况下使用各种设计参数来提高传热性能不可避免地会牺牲换热系数的增加。流动阻力。根据帕累托最优曲线,在Nu(c)/ Nu(s)> = 1.2的约束下,内波纹管双管换热器的最佳设计参数为P / D = 0.82,H / D = 0.22,r / D = 0.23,Re = 26,263,对应于eta = 1.12的最大值。 2014 Elsevier Masson SAS。版权所有。

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