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Laboratory investigation of gas leakage rate through a GM/GCL composite liner due to a circular defect in the geomembrane

机译:土工膜圆形缺陷导致的GM / GCL复合衬里气体泄漏率的实验室研究

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The migration of gas through a geomembrane overlying a geosynthetic clay liner (GM/GCL composite) in a landfill cover occurs primarily through defects in the geomembrane. This paper presents the experimental results of an investigation on gas flow through a GM/GCL composite liner where the geomembrane contained a circular defect. It shows that the gas leakage rate is affected by differential gas pressure, moisture content of the GCL, contact conditions, and defect diameter. Moisture content of the GCL was found to be a significant parameter controlling the gas flow rate. This implies that the GCL in a GM/GCL composite should be kept hydrated to high moisture content in order to achieve an effective composite barrier to gas in case a defect occurs in the geomembrane. It is also shown that intimate contact between the geomembrane and the geotextile supported GCL is required to reduce gas leakage rate through a composite system.
机译:气体通过覆盖在垃圾填埋场中的土工合成粘土衬里(GM / GCL复合材料)上的土工膜的迁移主要是由于土工膜的缺陷引起的。本文介绍了通过GM / GCL复合衬里的气流研究的实验结果,其中土工膜含有圆形缺陷。结果表明,气体泄漏率受气压差,GCL的水分含量,接触条件和缺陷直径的影响。发现GCL的水分含量是控制气体流速的重要参数。这意味着GM / GCL复合材料中的GCL应保持水合至高水分含量,以便在土工膜出现缺陷的情况下实现对气体的有效复合材料屏障。还表明,土工膜和土工布支撑的GCL之间需要紧密接触,以减少通过复合系统的气体泄漏率。

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