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Configuration Optimization and Performance Comparison of STHX-DDB and STHX-SB by A Multi-Objective Genetic Algorithm

机译:多目标遗传算法的STHX-DDB和STHX-SB的配置优化与性能比较

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摘要

Based on the thermohydraulic calculation model verified in this study and Non-dominated Sorted Genetic Algorithm-II (NSGA-II), a multi-objective configuration optimization method is proposed, and the performances of shell-and-tube heat exchanger with disc-and-doughnut baffles (STHX-DDB) and shell-and-tube heat exchanger with segmental baffles (STHX-SB) are compared after optimization. The results show that, except in the high range of heat transfer capacity of 16.5–17 kW, the thermohydraulic performance of STHX-DDB is better. Tube bundle diameter, inside tube bundle diameter, number of baffles of STHX-DDB and tube bundle diameter, baffle cut, number of baffles of STHX-SB are chosen as design parameters, and heat transfer capacity maximization and shell-side pressure drop minimization are considered as common optimization objectives. Three optimal configurations are obtained for STHX-DDB and another three are obtained for STHX-SB. The optimal results show that all the six selected optimal configurations are better than the original configurations. For STHX-DDB and STHX-SB, compared with the original configurations, the heat transfer capacity of optimal configurations increases by 6.26% on average and 5.16%, respectively, while the shell-side pressure drop decreases by 44.33% and 19.16% on average, respectively. It indicates that the optimization method is valid and feasible and can provide a significant reference for shell-and-tube heat exchanger design.
机译:基于本研究中验证的热液压计算模型和非主导的分类遗传算法-II(NSGA-II),提出了一种多目标配置优化方法,以及带圆盘的壳管热交换器的性能 - 优化后比较具有分段挡板(STHX-SB)的挡板(STHX-DDB)和壳管热交换器。结果表明,除了在16.5-17 kW的高温传递能力范围内,STHX-DDB的热液态化性能更好。管束直径,内部管束直径,STHX-DDB的挡板数量和管束直径,挡板切割,STHX-SB的挡板数量作为设计参数,传热容量最大化和壳侧压降最小化最小化被视为常见的优化目标。为STHX-DDB获得三种最佳配置,并且为STHX-SB获得另外的三个。最佳结果表明,所有六种选定的最佳配置都优于原始配置。对于STHX-DDB和STHX-SB,与原始配置相比,最佳配置的传热能力平均增加6.26%,分别为5.16%,而壳侧压降平均降低44.33%和19.16% , 分别。它表明优化方法有效可行,可以为壳管热交换器设计提供重要的参考。

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