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Linear Program-based Algorithm For The Optimal Design Of Wastewater Treatment Systems

机译:基于线性程序的污水处理系统优化设计算法

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摘要

This paper presents a new approach for the optimal design of distributed wastewater treatment networks with multiple contaminants. It consists of a two-stage solution strategy. In the first stage, a decomposition method is employed that replaces the general non-linear program (NLP) by a succession of linear programs, one for each treatment unit. In the second stage, the resulting network is used as a starting point for the solution of the general NLP by a local optimization solver. The decomposition process considers a specific substructure, where it is assumed that the wastewater streams go through the treatment units in sequence. To consider all combinations, the two-stage solution strategy is applied as many times as the number of possible sequences. This allows considering multiple and structurally different starting points, thus increasing the probability of finding global optimal solutions. The results have shown that the proposed approach can find better solutions than other approach reported in the literature, however with a drawback of being more demanding computationally.
机译:本文提出了一种优化设计的具有多种污染物的分布式废水处理网络的新方法。它包含两个阶段的解决方案策略。在第一阶段,采用一种分解方法,该方法通过一系列线性程序(每个治疗单元一个)来代替一般的非线性程序(NLP)。在第二阶段中,将得到的网络用作本地优化求解器求解通用NLP的起点。分解过程考虑特定的子结构,其中假定废水流按顺序经过处理单元。为了考虑所有组合,两阶段求解策略的应用次数与可能的序列数一样多。这允许考虑多个且结构上不同的起点,从而增加了找到全局最优解的可能性。结果表明,与文献中报道的其他方法相比,所提出的方法可以找到更好的解决方案,但是缺点是对计算的要求更高。

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