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Optimal Operation of Artificial Groundwater Recharge Systems Considering Water Quality Transformations

机译:考虑水质转化的人工地下水补给系统的优化运行

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摘要

In water limited areas as water demand increases alternative sustainable water sources must be identified. One supply augmentation practice, that is already being applied in the arid southwest U.S., is artificial groundwater recharge using wastewater effluent. The objective of a recharge facility is to supplement the available groundwater resources by storing water for the future. The resulting reclaimed water is used primarily for non-potable purposes but under increasing stresses shifting to potable use is likely to happen. Water quality then becomes a more pressing concern. Water quality improvements during infiltration and groundwater transport are significant and are collectively described as soil-aquifer treatment (SAT). To meet user needs, the recharge operation must be efficiently managed considering monetary, water quality and environmental concerns. In this paper, a SAT management model is developed that considers all of these concerns. Within the SAT management model, the shuffled complex evolution algorithm (SCE) is used as the optimization tool. SCE is a relatively new meta-heuristic search technique for continuous problems that has been used extensively for hydrologic model calibration. In this application, SCE is integrated with the simulation models (MODFLOW, MT3D, and MODPATH) to represent movement and quality transformations. Two steady state case studies on a general hypothetical aquifer (modeled after a field site) were examined using the management model.
机译:在水资源有限的地区,随着用水需求的增加,必须确定替代的可持续水资源。美国西南干旱地区已经采用的一种增加供应的做法是利用废水进行人工地下水补给。补给设施的目的是通过为将来储存水来补充可用的地下水资源。产生的再生水主要用于非饮用水目的,但是在不断增加的压力下,很可能会发生向饮用水的转变。然后,水质变得更加紧迫。渗透和地下水输送过程中水质的改善非常重要,统称为土壤含水层处理(SAT)。为了满足用户需求,必须考虑到金钱,水质和环境因素,有效地管理补给操作。在本文中,开发了考虑所有这些问题的SAT管理模型。在SAT管理模型中,改组的复杂进化算法(SCE)被用作优化工具。 SCE是针对连续问题的一种相对较新的元启发式搜索技术,已广泛用于水文模型校准。在此应用程序中,SCE与仿真模型(MODFLOW,MT3D和MODPATH)集成在一起,以表示运动和质量转换。使用管理模型检查了两个关于一般假设含水层的稳态案例研究(根据田间场地建模)。

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