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Analytical solutions for seepage near material boundaries in dam cores: The Davison-Kalinin problems revisited

机译:坝芯材料边界附近渗流的解析解决方案:戴维森-卡林宁问题再探

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Steady Darcian seepage through a dam core and adjacent shells is analytically studied. By conformal mappings of the pentagon in the hodograph plane and triangle in the physical plane flow through a low-permeable dam core is analyzed. Mass-balance conjugation of flow in the core and downstream highly-permeable shell of the embankment is carried out by matching the seepage flow rates in the two zones assuming that all water is intercepted by a toe-drain. Seepage refraction is studied for a wedge-shaped domain where pressure and normal components of the Darcian velocities coincide on the interface between the core and shell. Mathematically, the problem of R-linear conjugation (the Riemann-Hilbert problem) is solved in an explicit form. As an illustration, flow to a semi-circular drain (filter) centered at the triple point (contact between the core, shell and impermeable base) is studied. A piece-wise constant hydraulic gradient in two adjacent angles making a two-layered wedge (the dam base at infinity) is examined. Essentially 2-D seepage in a domain bounded by an inlet constant head segment, an outlet seepage-face curve, a horizontal base and with a straight tilted interface between two zones (core and shell) is investigated. The flow net, isobars, and isotachs in the core and shell are reconstructed by computer algebra routines as functions of hydraulic conductivities of two media, the angle of tilt and the hydraulic head value at a specified point.
机译:通过分析研究坝体核心和相邻壳体的稳态Darcian渗流。通过五角形在水印仪平面中的保形映射和物理平面中的三角形在低渗透性坝芯中的流动,进行了分析。假设所有水都被脚趾排水管拦截,则通过匹配两个区域中的渗流流速,可以进行堤坝芯部和下游高渗透性壳层中水流的质量平衡共轭。对楔形区域的渗流折射进行了研究,在该区域中,压力与达西速度的法向分量在芯与壳之间的界面上重合。在数学上,R-线性共轭问题(Riemann-Hilbert问题)以显式形式解决。作为说明,研究了流向以三点为中心(核,壳和不渗透性基底之间的接触)的半圆形排水管(过滤器)的流动。检查了两个相邻角度的分段恒定水力梯度,形成了两层楔形物(坝基位于无穷远处)。主要研究了二维二维渗流,该二维渗流由入口恒定水头段,出口渗流面曲线,水平基底以及两个区域(核和壳)之间的直倾斜界面界定。通过计算机代数例程,根据两种介质的水力传导率,倾斜角度和水压头值在指定点处的变化,重新构造核和壳中的流网,等压线和等腰线。

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