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Optimization of scheduled cleaning of fouled heat exchanger network under ageing using genetic algorithm

机译:遗传算法优化老化下结垢换热网络的定期清洗

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The problem of heat exchanger network (HEN) fouling and ageing has been a costly feature of chemical and petrochemical industries, particularly, the oil refineries. In this paper, a strategy to determine the optimal cleaning schedule of the crude oil refinery's preheat train (PHT) under fouling and different ageing scenarios (i.e., slow and fast ageing) is addressed by a specialized Genetic Algorithm (GA) which uses an array of discrete and positive integers as chromosome representation. Specifically, the effect of key cleaning decision factors (i.e., which, when and how to clean), dictated by the GA, on optimal cleaning schedules based on both thermal and economic behavior of the PHT was studied. The results highlight the efficacy of the GA and a novel chromosome application to the optimization of complex cleaning scheduling. Considerable savings are achieved by the implementation of optimum cleaning schedules for all the ageing scenarios compared with un-optimized cleaning or no cleaning performed in a case study involving a 14-unit crude oil refinery HEN. Fast ageing led to significant reduction in energy losses, and hence, improved heat recovery and fewer number of cleanings due to the higher formation rate of a more thermally conductive coke, compared with slow ageing. (C) 2016 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:热交换器网络(HEN)结垢和老化的问题一直是化学和石化行业,特别是炼油厂的昂贵特征。在本文中,通过使用阵列的专用遗传算法(GA)解决了在结垢和不同老化情况(即慢速老化和快速老化)下确定原油精炼厂预热列车(PHT)最佳清洗时间表的策略。离散和正整数作为染色体表示。具体而言,研究了由GA决定的主要清洁决策因素(即,何时清洁以及如何清洁)对基于PHT的热行为和经济行为的最佳清洁计划的影响。结果突出了遗传算法的效率和一种新颖的染色体应用程序,可优化复杂的清洗程序。通过对所有老化场景实施最佳清洗时间表,与涉及14个单元的炼油厂HEN的未优化清洗或不进行清洗相比,可节省大量资金。快速老化导致能量损失显着减少,因此与较慢的老化相比,由于导热性更高的焦炭的形成速率更高,因此提高了热回收率,并减少了清洗次数。 (C)2016年化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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