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Optimum Pumping Well Placement and Capacity Design for a Groundwater Lowering System in Urban Areas with the Minimum Cost Objective

机译:以最低成本为目标的城市地下水降低系统的最佳抽水井布置和容量设计。

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摘要

High level of groundwater in urban areas may cause major problems in construction and mining projects. One effective solution is to implement drainage wells to lower the water table into the desired level through an appropriate pumping strategy. In this paper, placement and capacity of the dewatering wells are optimized by minimizing the total costs of a groundwater lowering system (GLS) through a simulation-optimization approach. For this purpose, MODFLOW, the groundwater simulation software, is coupled with the Firefly Optimization Algorithm (FOA) to find the optimal solution. The proposed FOA-MODFLOW model is tested in an urban area in east southern part of Iran, Kerman city's ancient Mosque region. Results show that the obtained cost-effective design noticeably outperforms the consulting engineers' proposal in terms of both the number of drilled wells and the associated costs with justifiable constraints. Optimal strategy satisfies the constraints by suggesting construction of two wells with totally pumping rate of 5503 m(3)/day while the water table is dropped 1.5 m with a ground subsidence less than 80 mm in the region. Additionally, an investigation on the value of various design parameters emphasizes on the sensitivity of the solutions to the permissible groundwater level and the well's maximum pumping rates among the others.
机译:城市地区的地下水过多可能会在建筑和采矿项目中造成重大问题。一种有效的解决方案是实施排水井,以通过适当的抽水策略将地下水位降低至所需水位。在本文中,通过采用模拟优化方法将地下水降低系统(GLS)的总成本降至最低,来优化脱水井的位置和容量。为此,将地下水模拟软件MODFLOW与Firefly优化算法(FOA)结合使用,以找到最佳解决方案。拟议的FOA-MODFLOW模型在伊朗东部南部(克尔曼市古老的清真寺地区)的市区内进行了测试。结果表明,在合理数量的约束条件下,获得的具有成本效益的设计在钻井数量和相关成本方面均明显优于咨询工程师的建议。最佳策略通过建议建造两口井,总抽水量为5503 m(3)/天,而地下水位下降1.5 m且该区域地面沉降小于80 mm来满足约束条件。此外,对各种设计参数的值的研究重点在于解决方案对允许的地下水位的敏感性以及井的最大抽水速率等。

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