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The optimization on flow scheme of helium liquefier with genetic algorithm

机译:遗传算法氦液化流程的优化

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There are several ways to organize the flow scheme of the helium liquefiers, such as arranging the expanders in parallel (reverse Brayton stage) or in series (modified Brayton stages). In this paper, the inlet mass flow and temperatures of expanders in Collins cycle are optimized using genetic algorithm (GA). Results show that maximum liquefaction rate can be obtained when the system is working at the optimal parameters. However, the reliability of the system is not well due to high wheel speed of the first turbine. Study shows that the scheme in which expanders are arranged in series with heat exchangers between them has higher operation reliability but lower plant efficiency when Working at the same situation. Considering both liquefaction rate and system stability, another flow scheme is put forward hoping to solve the dilemma. The three configurations are compared from different aspects, they are respectively economic cost, heat exchanger size, system reliability and exergy efficiency. In addition, the effect of heat capacity ratio on heat transfer efficiency is discussed. A conclusion of choosing liquefier configuration is given in the end, which is meaningful for the optimal design of helium liquefier. (C) 2016 Elsevier Ltd. All rights reserved.
机译:有几种方法可以组织氦液化器的流动方案,例如并联(反向布雷顿阶段)或串联(改进的Brayton阶段)布置扩充器。本文利用遗传算法(GA)优化了柯林斯循环中膨胀机的入口质量流量和温度。结果表明,当系统在最佳参数工作时,可以获得最大液化率。然而,由于第一涡轮机的高轮速度,系统的可靠性并不好。研究表明,在相同情况下工作时,扩展器与它们之间的热交换器串联布置的方案具有更高的操作可靠性,而是较低的工厂效率。考虑既液化率和系统稳定性,提出了另一种流程,希望能解决困境。三种配置与不同的方面进行比较,它们分别是经济成本,热交换器尺寸,系统可靠性和高效率。此外,讨论了热容比对传热效率的影响。最后给出了选择液化液配置的结论,这对于氦液化的最佳设计有意义。 (c)2016 Elsevier Ltd.保留所有权利。

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