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Many-Objective Design of Engineered Injection and Extraction Sequences for In Situ Remediation of Contaminated Groundwater

机译:工程注入和提取程序的多目标设计,用于原位修复受污染的地下水

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Although in situ treatment methods exist for groundwater contamination remediation, it is often difficult to increase the efficiency of the reactions under time constraints. During in-situ remediation, a treatment solution is injected into the contaminated region of the aquifer to react with and degrade the groundwater contaminant. Ideally, the treatment solution should be spread throughout the contaminated region to increase its contact with the contaminant, leading to more opportunities for degradation reactions. Engineered injection and extraction (EIE) is a promising technique for generating spreading, in which transient flow fields are induced using a sequence of injections and extractions of clean water at wells surrounding the contaminant plumes. While simulations of in situ remediation using a single unique sequence of EIE have shown that spreading due to EIE can enhance reaction, a new approach is needed to design high-quality EIE designs that consider multiple engineering performance objectives. This study uses a multiobjective evolutionary algorithm (MOEA) to determine a set of EIE designs that balance multiple objectives, such as maximizing the amount of reaction while minimizing the amounts of required treatment solution and extracted groundwater contaminant. Such tradeoff surfaces allow stakeholders to determine how EIE designs perform under various degrees of aquifer heterogeneity, types of contaminant (aqueous or sorbed), number of wells, and location of wells.
机译:尽管存在用于地下水污染修复的原位处理方法,但通常难以在时间限制下提高反应效率。在原位修复过程中,将处理溶液注入含水层的污染区域中,以与地下水中的污染物发生反应并使之降解。理想情况下,处理溶液应散布在整个污染区域,以增加其与污染物的接触,从而导致更多的降解反应机会。工程注入和提取(EIE)是一种有前途的技术,可用于产生扩散,其中在污染烟羽周围的井中使用一系列的注入和提取纯净水来诱导瞬态流场。尽管使用单个唯一的EIE序列进行原位修复的模拟表明,由于EIE引起的扩散可以增强反应,但仍需要一种新方法来设计考虑多个工程性能目标的高质量EIE设计。这项研究使用多目标进化算法(MOEA)来确定一组平衡多个目标的EIE设计,例如最大化反应量,同时最小化所需的处理溶液和提取的地下水污染物的量。这样的权衡面使利益相关者可以确定EIE设计在不同程度的含水层非均质性,污染物的类型(含水或吸附的),孔的数量以及孔的位置下的性能。

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