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Multi-objective optimization of heat exchanger networks based on analysis of minimum temperature difference and accumulated CO2 emissions

机译:基于最小温差和累积CO2排放量分析的换热网络多目标优化

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A multi-objective optimization method of heat exchanger network (HEN) on the basis of partition of minimum approach temperature (Delta T-min) intervals is proposed to minimize the total annual cost and accumulated CO2 emissions in construction and operation phases. In this method, both dominant and recessive CO2 emissions are considered, and the effects of Delta T-min on multi-objective optimization problems of HEN are investigated. We find that a multi-objective optimization problem may reduce to a single objective optimization problem as Delta T-min changes. The critical Delta T-min that distinguishes the intervals for the single objective optimization and the multi-objective optimization problem can be identified by combining the pinch analysis and mathematical programming method. The optimal structure and CO2 emissions of HEN are obtained in the single objective optimization problem, whereas the Pareto front of two objectives and a trade-off strategy are obtained in the multi-objective optimization problem. The HEN in a vacuum gas oil hydro-treating unit in a refinery is taken as a case study. Results indicate that the partition of Delta T-min intervals helps to identify the nature of the multi-objective optimization problems and reduce the computation loads of the multi-objective optimization problem of HENs. In addition, the optimal solutions of HEN obtained by the epsilon-constraint method distribute uniformly, and the dominant objective changes gently within the intervals of Delta T-min for the multi-objective optimization. (C) 2015 Elsevier Ltd. All rights reserved.
机译:为了最小化建设和运营阶段的年度总成本和累积CO2排放,提出了一种基于最小进站温度(Delta T-min)间隔分配的换热网络(HEN)多目标优化方法。在该方法中,考虑了主要和隐性的CO2排放,并研究了Delta T-min对HEN的多目标优化问题的影响。我们发现,随着Delta T-min的变化,多目标优化问题可能会减少为单个目标优化问题。可以通过结合收缩分析和数学编程方法来识别区分单目标优化和多目标优化问题的间隔的临界Delta T-min。在单目标优化问题中获得了HEN的最佳结构和CO2排放,而在多目标优化问题中获得了两个目标的Pareto前沿和权衡策略。以炼油厂的减压瓦斯油加氢处理装置中的HEN为例。结果表明,Delta T-min区间的划分有助于识别多目标优化问题的性质,并减少HENs多目标优化问题的计算量。此外,通过ε约束方法获得的HEN的最优解是均匀分布的,并且在多目标优化中,主要目标在Delta T-min的间隔内缓慢变化。 (C)2015 Elsevier Ltd.保留所有权利。

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