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首页> 外文期刊>International Journal of Rock Mechanics and Mining Sciences >Composite element method for the seepage analysis of rock masses containing fractures and drainage holes
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Composite element method for the seepage analysis of rock masses containing fractures and drainage holes

机译:含裂隙和排水孔岩体渗流分析的复合单元法

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摘要

The composite element method (CEM) is formulated for the seepage analysis of rock masses containing fractures and drainage holes. Each fracture or drainage segment is treated as a special sub-element having definite seepage characteristics, and is located explicitly within the composite element. The governing equation for the composite element containing both fractures and drainage holes is established using the variational principle. By the CEM developed in this paper, the fractures and drainage holes can be simulated explicitly but do not intervene in the discrete of the calculation domain concerned, in this way the generation of the computation mesh is not restricted strongly by the position and the orientation of the fractures and drainage holes, which is important in the optimal design of seepage control system. If there are no fractures and drainage holes, the CEM will automatically be degenerated to the conventional finite element method (FEM). The validity and reliability of the CEM is verified by a numerical example. The application and comparative study for the Baozhusi dam foundation is presented.
机译:制定了复合单元法(CEM),用于包含裂缝和排水孔的岩体的渗流分析。每个裂缝或排水段都被视为具有确定的渗流特征的特殊子元素,并且明确地位于复合元素内。利用变分原理建立了既包含裂缝又包含排水孔的复合元件的控制方程。通过本文开发的CEM,可以清楚地模拟裂缝和排水孔,但不会干扰相关计算域的离散,这样,计算网格的生成就不会受到网格的位置和方向的强烈限制。裂缝和排水孔,这对防渗系统的优化设计很重要。如果没有裂缝和排水孔,则CEM将自动退化为常规的有限元方法(FEM)。通过数值算例验证了CEM的有效性和可靠性。介绍了宝珠寺大坝基础的应用及对比研究。

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