Stability analysis of embankment dams with defective internal geomembrane liners

IF 2.3 Q2 ENGINEERING, GEOLOGICAL International Journal of Geotechnical Engineering Pub Date : 2022-02-28 DOI:10.1080/19386362.2021.2014676
Sarper Demirdogen, M. Gunaratne
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引用次数: 4

Abstract

ABSTRACT Internal geomembranes are alternatives to traditional clay cores and upstream geomembranes. In this research, numerical analysis is performed to assess the impact of leakage through 2-D geomembrane defects such as slits, tears and faulty stitches. Five possible applications of internal geomembranes and an upstream geomembrane were modelled to compare their performance with that of clayey cores. The results show that use of upstream or internal geomembranes significantly decreases the pore pressure developed at the downstream slope thus improving its stability. The effects of leakage through both internal and upstream geomembranes on the stability of embankment slopes under steady state and drawdown at a rate, conditions were analysed. Stability of the downstream slope reduces significantly due to defective geomembranes depending on the defective seam locations. Drawdown simulations show that internal geomembranes can cause instability in steep upstream slopes of dams.
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土工膜衬砌内部有缺陷的路堤坝稳定性分析
内部土工膜是传统粘土芯和上游土工膜的替代品。在这项研究中,进行了数值分析,以评估通过二维土工膜缺陷(如裂缝、撕裂和错误缝合)泄漏的影响。对内部土工膜和上游土工膜的五种可能应用进行了建模,以将其性能与粘土芯的性能进行比较。结果表明,上游或内部土工膜的使用显著降低了下游边坡产生的孔隙压力,从而提高了边坡的稳定性。分析了通过内部和上游土工膜的渗漏对稳定状态下路堤边坡稳定性的影响,以及在一定速率和条件下的水位下降。由于存在缺陷的土工膜(取决于缺陷接缝位置),下游边坡的稳定性显著降低。压降模拟表明,内部土工膜会导致大坝上游陡坡的不稳定。
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来源期刊
CiteScore
5.30
自引率
5.30%
发文量
32
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