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Failure mechanisms of geosynthetic clay liner and textured geomembrane composite systems

机译:土工合成粘土衬里和纹理土工膜复合系统的失效机制

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摘要

The objective of this study was to evaluate shear behavior and failure mechanisms of composite systems comprised of a geosynthetic clay liner (GCL) and textured geomembrane (GMX). Internal and interface direct shear tests were performed at normal stresses ranging from 100 kPa to 2000 kPa on eight different GCL/GMX composite systems. These composite systems were selected to assess the effects of (i) GCL peel strength, (ii) geotextile type, (iii) geotextile mass per area, and (iv) GMX spike density. Three failure modes were observed for the composite systems: complete interface failure, partial interface/internal failure, and complete internal failure. Increasing normal stress transitioned the failure mode from complete interface to partial interface/internal to complete internal failure. The peak critical shear strength of GCL/GMX composite systems increased with an increase in GMX spike density. However, the effect of geotextile type and mass per area more profoundly influenced peak critical shear strength at normal stress 500 kPa, whereby an increase in geotextile mass per area enhanced interlocking between a non-woven geotextile and GMX. Peel strength of a GCL only influenced the GCL/GMX critical shear strength when the failure mode was complete internal failure.
机译:本研究的目的是评估由地质合成粘土衬里(GCL)和纹理的土工膜(GMX)组成的复合系统的剪切行为和失效机制。内部和界面直接剪切试验在八个不同的GCL / GMX复合系统上以100kPa至2000kPa的正常应力进行。选择这些复合系统以评估(i)GCl剥离强度,(ii)地理织物型,(iii)地理织物质量的影响,(iv)Gmx尖峰密度。对于复合系统,观察到三种故障模式:完整的界面故障,部分接口/内部故障,并完成内部故障。增加正常压力从完全接口转换到部分接口/内部的故障模式以完成内部故障。 GCL / GMX复合系统的峰值临界剪切强度随GMX尖峰密度的增加而增加。然而,土工织物类型和质量每面积的效果更深刻地影响正常应力且GT的峰值临界剪切强度。 500 KPA,其中每个区域的土工织物质量增加增强了无纺布土工织物和GMX之间的互锁。当故障模式完全内部故障时,GCL的剥离强度仅影响GCL / GMX临界剪切强度。

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