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Computation and Analysis of High Rocky Slope Safety in a Water Conservancy Project

机译:水利工程中高边坡安全性的计算与分析

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摘要

An integrated method, covering the actual monitoring analysis, practical geological model, and theoretical mathematical simulation model, is systematically proposed and successfully applied. Deformation characteristic of a unique high rocky slope was firstly analyzed from multiple angles and multiple layers by changeable elevations and distances. Arrangements ofmonitoring points were listed and monitoring equipment was designed to comprise a complete monitoring system. Present larger displacement was concluded for bottom larger displacement caused by water erosion and middle larger displacement formed by seepage. Temporal and spatial displacements rule study of multiple-points linkage effects with water factor proved this conclusion. To better excavate useful message and analyze the deep rule from the practical monitoring data, the slope geological model was conducted and rock mechanic parameters were researched. Finally, a unique three-dimensional finite element model was applied to approach the structure character using numerical simulations. The corresponding strength criterion was used to determine the safety coefficient by selecting a typical section. Subsequently, an integrated three-dimensional finite element model of the slope and dam was developed and more detailed deformation evolution mechanism was revealed. This study is expected to provide a powerful and systematic method to analyze very high, important, and dangerous slopes.
机译:提出了一种涵盖实际监测分析,实用地质模型和理论数学模拟模型的综合方法,并成功应用。首先通过变化的仰角和距离从多个角度和多个层面分析了独特的高岩石边坡的变形特征。列出了监视点的安排,并设计了监视设备以构成一个完整的监视系统。对于由水蚀引起的底部较大位移和由渗流形成的中部较大位移,可以得出目前较大的位移。时空位移规律与水因子的多点联系效应研究证明了这一结论。为了更好地挖掘有用的信息并从实际监测数据中分析深层规律,建立了边坡地质模型,研究了岩石力学参数。最后,通过数值模拟,采用独特的三维有限元模型来逼近结构特征。相应的强度标准用于通过选择典型截面来确定安全系数。随后,开发了边坡和大坝的集成三维有限元模型,并揭示了更详细的变形演化机理。该研究有望为分析非常高,重要和危险的边坡提供有力而系统的方法。

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