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Hysteresis of the water retention curves of geosynthetic clay liners in the high suction range

机译:高吸入范围内土工合成粘土衬里水保留曲线的滞后

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This paper examines two needle-punched geosynthetic clay liners' water retention behaviour at high suction ranges using the vapour equilibrium technique where super-saturated salt solutions controlled the relative humidity. This study shows that the bentonite form and its mineralogy affect the absorption/desorption of GCLs and their corresponding water retention curves. In particular, a granular bentonite-based GCL was found to absorb more and release less water than a powdered bentonite-based GCL due to its higher montmorillonite content and larger pores. The water retention curves of both GCLs exhibited very little hysteretic behaviour at high suction. Repeated wetting-drying cycles shifted the WRCs of both GCLs slightly downward with minimal impact on their degree of hysteresis.
机译:本文使用超饱和盐溶液控制相对湿度的蒸汽平衡技术,检查了两个针刺地球合式粘土衬里的水保留行为。 本研究表明,膨润土形式及其矿物质影响GCLS的吸收/解吸及其相应的水保持曲线。 特别地,发现粒状膨润土的GCl吸收更多,并且由于其高于蒙脱石含量和较大的孔而大于粉末膨润土的GCL释放水。 两种GCLS的水保持曲线在高吸力下表现出非常小的滞后行为。 重复的润湿干燥循环使两个GCL的WRC略微向下移动,并对其滞后程度的影响最小。

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