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Simulation of groundwater mound resulting from proposed artificial recharge of treated sewage effluent case study - Gaza waste water treatmentplant, Palestine

机译:拟处理污水的人工补给所产生的地下水堆的模拟案例研究-巴勒斯坦加沙废水处理厂

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Mounding of the groundwater table beneath recharge sources is of concern as the raised water table approaches closely to near-surface facilities or features. The shape and height of the mound depend on several factors including the recharge rate, hydraulic conductivity and thickness of the aquifer. The objective of this paper is to evaluate the suit-ability of the study area for a rapid infiltration system of treated wastewater effluent without causing excessive mound-ing of the water table. A comparison was made between two methods used to estimate ground-water mounding: an analytical approach and a numerical approach. Both approaches incorporate each of the saturated and the unsaturated zones. Results predicted that after 1400 days of groundwater level simulation, the maximum rise of the mound was 18 m in the center of the infiltration pond, and it was almost 17 m at the edges of the pond. As the natural average groundwater level was about 35 m deep in the area of the study, the groundwater mounding caused no problem on the groundwater level. Thus, the planned infiltration was feasible.
机译:由于升高的地下水位非常接近于近地表设施或功能,因此在补给源下方的地下水位的堆砌值得关注。土墩的形状和高度取决于几个因素,包括补给速度,水力传导率和含水层的厚度。本文的目的是评估研究区域对于已处理废水快速渗透系统的适宜性,而不会引起地下水位的过多堆积。比较了两种用于估算地下水堆积的方法:一种分析方法和一种数值方法。两种方法都结合了每个饱和区和不饱和区。结果预测,经过1400天的地下水位模拟,渗流池中心的土堆最大上升高度为18 m,而池边缘的最大上升高度为17 m。由于研究区域内的自然平均地下水位约为35 m,因此地下水堆放不会对地下水位造成任何问题。因此,计划的渗透是可行的。

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