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New high-precision empirical methods for predicting the seepage discharges and free surface locations of earth dams validated by numerical analyses using the IFDM

机译:通过IFDM进行的数值分析验证了用于预测土坝渗流和自由表面位置的新型高精度经验方法

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摘要

The interpolation finite difference method (IFDM) can be used in the numerical analysis of steady-state seepage problems over arbitrary domains. In such analyses, by providing the coordinates of change points considering the polygonal domain and boundary conditions, a grid is automatically generated and a numerical solution is promptly obtained. Homogeneous, isotropic dams without tail drains have been investigated in a previous study. However, to consider dams with tail drains, we must alter the previous system slightly. This paper describes the altered system. In earlier times, when computation power was limited and before modern numerical calculation methods had been established, it was highly important for dam engineers to estimate the seepage discharge and the location of the free surface. Several empirical methods were proposed, and these have retained their functionality. For instance, the basic parabola method is an exemplary work that builds on classic empirical methods. In this work, the results obtained using A. Casagrande's method are compared with those obtained by IFDM, and it is confirmed that there are considerable deviations between them. The so-called "equivalent KZ flow method" is proposed and shown to significantly improve the calculation accuracy for the discharge and free surface location. (C) 2018 Production and hosting by Elsevier B.V. on behalf of The Japanese Geotechnical Society.
机译:插值有限差分法(IFDM)可用于对任意区域的稳态渗流问题进行数值分析。在这种分析中,通过提供考虑多边形域和边界条件的变化点坐标,可以自动生成网格并迅速获得数值解。在先前的研究中已经研究了没有尾水排放的均质各向同性大坝。但是,要考虑使用带尾巴的水坝,我们必须对先前的系统进行一些改动。本文介绍了更改后的系统。在早期,当计算能力受到限制时,在建立现代数值计算方法之前,对于大坝工程师来说,估算渗流量和自由表面的位置非常重要。提出了几种经验方法,这些方法保留了其功能。例如,基本抛物线方法是建立在经典经验方法基础上的示例性工作。在这项工作中,将使用卡萨格兰德方法获得的结果与通过IFDM获得的结果进行了比较,并证实了两者之间存在相当大的偏差。提出并显示了所谓的“等效KZ流动法”,该方法显着提高了排放和自由表面位置的计算精度。 (C)2018年由Elsevier B.V.代表日本岩土工程学会制作和托管。

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