用有限差分法确定不透水坝基上的板桩帷幕位置

Barış Kaçak, Ertugrul Ordu, Reşat Mutlu
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摘要

在地下水流中,如果水流方向与水流底层出口区域的重力方向相反,则可能发生沸腾现象。为防止沸腾,可增加水流路径的长度,或在有沸腾风险的区域使用重量过滤器。增加水流路径长度的方法是在大坝的上游(入口)部分建造防渗层,或在大坝下建造防渗板桩墙。在不透水大坝下建造板桩墙既昂贵又困难。本研究在大坝上游区和下游(出口)区之间的不同位置布置了坝墙下的板桩墙,并采用有限差分法分析了大坝的渗流率值。通过水头梯度计算出垂直渗流率值和防止垂直沸腾的安全系数。结果表明,在大坝出口区域设置的板桩墙是渗漏率最小的方案,因此也是防止沸腾的垂直安全系数最大的方案。
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Sonlu Farklar Yöntemi Kullanılarak Geçirimsiz Baraj Tabanına Yerleştirilen Palplanş Perdesinin Yerinin Belirlenmesi
In water currents within the ground, a boiling event may occur if the flow direction is opposite to gravity in the outlet area of the flow floor. To prevent a boiling event, the length of the flow path is increased or a weight filter is used in the area where there is a risk of boiling. Increasing the length of the current path is possible by creating an impermeable layer in the upstream (inlet) section of the dam or by making an impermeable sheet pile wall under the dam. The construction of the sheet pile wall under an impervious dam is expensive and difficult. In this study, the sheet pile wall under the dam wall was placed in various positions between upstream region and downstream (outlet) region of the dam, and the value of the dam's seepage rate was analyzed by finite difference method. Vertical seepage rate values and safety numbers against vertical boiling have been found by taking the gradient of the hydraulic head. It has been seen that the sheet pile wall placed in the exit zone of the dam is the solution that minimizes the leakage rate, and, therefore, maximizes the vertical safety number against boiling.
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