Application of the Grey Wolf Optimization Algorithm to Separate Middle Components in Multicomponent Mixtures

M. Imani, M. Aghaei
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引用次数: 1

Abstract

This paper presents the optimization of a system of square cascades for separating the middle components of xenon. It also presents the optimal use of square cascades in this system. As an example, the separation of 130 Xe, an element whose middle isotope is much more complex than any of the other isotopes of xenon, is provided. The Grey Wolf Algorithm is applied for optimization. and the parameters of cascade feed flow rate, cut off the cascade, feed location, feed flow of gas centrifuges (GC), and the cut of the first stage are optimized in such a way that the maximum recovery of the target isotope and the maximum cascade capacity are achieved. Based on the optimization results, the more steps the cascade has, the fewer separation steps are needed for the nine selected cascades with 180 GCs. As a result, both the recovery factor and the amount of product increase.
灰狼优化算法在多组分混合物中中间组分分离中的应用
本文介绍了一种用于分离氙中间组分的方形级联系统的优化设计。本文还介绍了在该系统中使用方形级联的最佳方法。作为一个例子,130 Xe的分离是一个元素,它的中间同位素比氙的任何其他同位素都复杂得多。采用灰狼算法进行优化。对叶栅进料流量、切断叶栅、进料位置、气相离心机进料流量、第一级切断等参数进行优化,使目标同位素回收率达到最大,叶栅容量达到最大。从优化结果来看,所选择的9个180 gc级的叶栅的分离步骤越多,所需的分离步骤越少。结果,回收率和产品的数量都增加了。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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