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Shear strength of geomembrane-soil interface under unsaturated conditions

机译:非饱和条件下土工膜-土界面的抗剪强度

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摘要

Interface shear tests on non-textured geomembrane-soil interfaces were performed using a modified direct shear apparatus installed with a miniature pore pressure transducer (PPT). Using the PPT, pore-water pressure changes in the vicinity of geomembrane-soil interface were measured during shear, thus making it possible to analyse test results in terms of effective stresses. When plotted in terms of total stresses, interface shear strength envelopes, consistent with those published in the literature, were obtained. However, the results were difficult to interpret using effective stresses, particularly those obtained at high normal stresses. It was found that at low normal stress values the shear strength of a geomembrane-soil interface in terms of effective stresses could be predicted using unsaturated soil mechanics concepts. At high normal stresses, it was found that the failure mechanism changed from soil particles sliding at the surface of the geomembrane to soil particles becoming embedded into the geomembrane and plowing trenches along the direction of shear. A plowing failure mechanism resulted in the mobilization of significantly higher shear strength at the geomembrane-soil interface. It was found that at higher placement water content for the soil, near saturated conditions prevail at the geomembrane-soil interface, resulting in lower effective stresses, a shallower plowing mechanism and lower values of mobilized interface shear strength.
机译:使用安装了微型孔隙压力传感器(PPT)的改进型直接剪切设备,对非织构土工膜-土壤界面进行界面剪切测试。使用PPT,可以在剪切过程中测量土工膜-土壤界面附近的孔隙水压力变化,从而可以根据有效应力来分析测试结果。当用总应力作图时,得到与文献中公开的一致的界面抗剪强度包络线。但是,使用有效应力(尤其是在高法向应力下获得的应力)很难解释结果。结果发现,在低法向应力值下,可以使用非饱和土壤力学概念来预测土工膜-土壤界面在有效应力方面的抗剪强度。在高法向应力下,发现破坏机理从在土工膜表面滑动的土壤颗粒转变为沿剪切方向嵌入土工膜和犁沟的土壤颗粒。耕作破坏机制导致土工膜-土壤界面处的剪切强度明显提高。发现在较高的土壤含水量下,土工膜-土壤界面处普遍存在饱和条件,从而导致较低的有效应力,较浅的耕作机制和较低的动员界面抗剪强度值。

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