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An Investigation on performance of the cutoff wall and numerical analysis of seepage and pore water pressure of Eyvashan earth dam

机译:Eyvashan土坝渗流墙截止墙和数值分析的研究

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摘要

One of the most important issues in earth dams is the control rate of seepage from the foundation and dam bodies. Due to the site of the dams, to increase the creep length and reduce the seepage, there are several methods for sealing the reservoir of dams that construction of the cut-off wall under the clay core of the dams is one of the most effective methods. In this study, the seepage rate and pore water pressure of the Eyvashan earth dam, comparison of instrument results with the results of numerical analysis and, finally, the performance of the cut-off wall are investigated. According to the results of instrumental and numerical analysis, the maximum seepage rate in full reservoir conditions is equal to 831,604 m(3)/year. To fit the data of instrumentation and numerical analysis, multivariate regression was used and the coefficient of determination was used which R-2 = 0.9892 and R-2 = 0.9834, respectively, were obtained for seepage and pore water pressure. Very good agreement between the results of the observed data and the predicted data indicates the proper behavior of the dam in terms of pore water pressure. Also, due to the results of numerical simulation and instrumentation, the pore water pressure in the downstream part of the cut-off wall is suddenly dropped, which indicates the correct operation of the cut-off wall.
机译:地球坝中最重要的一个问题之一是渗流从基坑和坝体的控制速度。由于坝的部位,增加蠕变长度并减少渗漏,有几种方法用于密封水坝的储存器,即在坝的粘土核心下构造切断墙是最有效的方法之一。在这项研究中,渗流率和孔隙水压的Eyvashan地球大坝,仪器的比较结果随着数值分析的结果,最后,研究了截止墙的性能。根据仪器和数值分析的结果,全水库条件的最大渗流速率等于831,604米(3)/年。为了符合仪器的数据和数值分析,使用多变量回归,并且可以分别使用R-2 = 0.9892和R-2 = 0.9834的测定系数用于渗流和孔隙水压力。观察数据结果与预测数据之间的结果非常好,指示大坝在孔隙水压力方面的适当行为。而且,由于数值模拟和仪器的结果,截止墙的下游部分中的孔隙水压突然下降,这表示切断墙的正确操作。

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