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Optimal design of a double pipe heat exchanger based on the outward helically corrugated tube

机译:基于向外螺旋波纹管的双管换热器的优化设计

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A double pipe heat exchanger with outward helically corrugated tube is numerically studied and optimized. Under the determined geometry parameters of the corrugated tube, the parameter of the shell side is desired to obtain. Also, the mechanism of enhanced heat transfer and complex flow features on the shell side is investigated and compared with the tube side. Matching flow rates of tube and shell sides are solved by a multi-objective optimization method concerning simultaneously the heat transfer performance, pressure drop and energy benefit. It was found that, the variation tendencies of local heat transfer and pressure drop on tube and shell sides are exactly the same, and both the heat transfer and pressure drop are increased with decreasing the shell diameter. For a comprehensive consideration, the shell diameter of 38 mm is the best parameter to obtain a high heat transfer coefficient, and a low pressure drop. The optimal solutions of the matching flow rates on tube and shell sides are obtained by the genetic algorithm, and two equilibrium solutions are obtained for the tube and shell sides. (C) 2019 Elsevier Ltd. All rights reserved.
机译:对带有向外螺旋波纹管的双管换热器进行了数值研究和优化。在波纹管的确定的几何参数下,期望获得壳侧的参数。此外,还研究了壳侧增强传热和复杂流动特性的机理,并将其与管侧进行了比较。通过同时考虑传热性能,压降和能量效益的多目标优化方法,解决了管壳侧的匹配流速问题。结果发现,管壁和壳侧的局部传热和压降的变化趋势完全相同,并且随着壳直径的减小,传热和压降均增加。综合考虑,壳直径38 mm是获得高传热系数和低压降的最佳参数。利用遗传算法获得了管壳侧匹配流量的最优解,并获得了管壳侧的两个平衡解。 (C)2019 Elsevier Ltd.保留所有权利。

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