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The effectiveness of cutoff walls to control saltwater intrusion in multi-layered coastal aquifers: Experimental and numerical study

机译:防渗墙控制多层沿海含水层中海水入侵的有效性:实验和数值研究

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The objective of this study was to examine the performance of cutoff walls in controlling saltwater intrusion in stratified heterogeneous coastal aquifers. Numerical and laboratory experiments were completed in laboratory-scale aquifer where the effectiveness of cutoff walls was assessed in three different configurations, including a homogeneous scenario, a stratified aquifer with high K-low K-high K pattern (case HLH) and another stratified aquifer with low K-high K-low K pattern (case LHL). The results show that the cutoff wall was effective in reducing the saltwater wedge in all the investigated cases of layered-aquifers with toe length reduction of up to 43%. The wall exhibited more wedge reduction in shallower than steeper hydraulic gradients. However, the soil stratification appeared to lessen the overall performance of the wall compared to the homogeneous case. The aquifer stratification disrupted the flow dynamics, and thus affected the freshwater velocity at the wall opening to various degrees, depending on the layering pattern. The presence of an interlayer of low k (case HLH) inhibited the downward movement of the freshwater towards the wall opening, and thus decreasing the repulsion ability of the wall. Moreover, the presence of an underlying low permeability layer (case LHL) was found to obstruct the freshwater flow in the lower part of the aquifer, thereby slowing down the velocity through the wall opening. Numerical analysis of other layering patterns of monotonically increasing/ decreasing permeability from top to bottom showed that the cutoff wall remained effective in repulsing the seawater wedge.
机译:这项研究的目的是研究防渗墙在控制分层非均质沿海含水层中盐水入侵方面的性能。在实验室规模的含水层中完成了数值和实验室实验,其中以三种不同的配置评估了防渗墙的有效性,包括均质方案,具有高K低K高K模式的分层含水层(案例HLH)和另一个分层含水层低K高K低K模式(案例LHL)。结果表明,在所有层状含水层的调查案例中,截流墙都能有效地减少咸水楔,其趾长减少最多达43%。与较陡的水力梯度相比,该壁在较浅的位置表现出更多的楔形减小。但是,与均质情况相比,土壤分层似乎会降低墙的整体性能。取决于分层模式,含水层分层扰乱了水流动力学,并因此以不同程度影响了开孔处的淡水速度。低k夹层的存在(情况HLH)抑制了淡水向壁开口的向下运动,从而降低了壁的排斥能力。而且,发现下面的低渗透层(LHL情况)的存在阻碍了含水层下部的淡水流动,从而减慢了通过壁孔的速度。从顶部到底部单调增加/减少渗透率的其他分层模式的数值分析表明,防渗墙仍然有效地排斥了海水楔。

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