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Determination of the optimum sealing method for Azad pumped storage dam considering seepage analysis

机译:考虑渗流分析的Azad泵送储罐最佳密封方法的确定

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Seepage analysis of the upper reservoir of the Kurdistan Azad pumped storage dam with a volume of 3.8E+5 m(3) is a key step for selection of the optimized sealing method. More than 60% of the Lugeon test results show very permeable behavior for the pit and abutments of the reservoir. In this study, regarding the permeability value of the reservoir abutments and pit obtained by means of Lugeon tests, seepage rate was computed using various analytical and numerical methods. Reservoir total seepage discharge was computed in steady-state regime by means of analytical and numerical methods (SEEP/W finite element software) as 1.14E+05 and 1.15E+05 m(3)/day, respectively. Distinct element method (UDEC software) showed variable behavior for the seepage flow. In the reservoir initial impounding stages, the amount of seepage was very high (1.70E+06 m(3)/day). Then, the seepage rate decreased gradually and reached to a constant value (1.12E+05 m(3)/day). For the reservoir 3D modeling, Seep3D commercial software was used and has shown water seepage discharge of about 1.18E+05 m(3)/day, means 3% of total reservoir volume. Based on the above-mentioned results and regarding behavior of seepage in the initial impounding stages, sealing element is necessary to prevent from seepage phenomenon. Clay blanket, concrete lining, asphaltic concrete, and geosynthetic are the proposed methods in a large water reservoir. After a feasibility study on various sealing methods, geomembrane was suggested as the best sealing method with the reasonable implementation cost.
机译:Kurdistan Azad泵送储罐上储层的渗漏分析,体积为3.8e + 5 m(3)是选择优化的密封方法的关键步骤。超过60%的Lugeon测试结果表明了储层的坑和基台的非常渗透行为。在本研究中,关于通过洛氏试验获得的储层支座和坑的渗透值,使用各种分析和数值方法计算渗流速率。通过分析和数值方法(SEEP / W有限元件软件)分别为1.14e + 05和1.15e + 05 m(3)/天,以稳态制度计算储存器总渗漏放电。不同的元素方法(UDEC软件)显示了渗流流的变量行为。在储层初始蓄水阶段,渗流量非常高(1.70e + 06米(3)/天)。然后,渗流速率逐渐降低并达到恒定值(1.12e + 05 m(3)/天)。对于储层3D建模,使用SEEP3D商业软件,并显示出约1.18E + 05米(3)/天的水渗漏排放,意指总储层体积的3%。基于上述结果,并且关于初始蓄芯阶段的渗流的行为,密封元件是必要的,以防止渗流现象。粘土毯,混凝土衬里,沥青混凝土和地球合式式是大水库中的提出方法。在对各种密封方法的可行性研究之后,建议土工膜作为具有合理实施成本的最佳密封方法。

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