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BEHAVIOR OF LARGE SCALE UNDERGROUND CAVERN LOCATED IN JOINTED ROCK MASSES EVALUATED BY USING DISTINCT ELEMENT METHOD

机译:利用不同元素法评价联合岩体中大型地下洞室的行为

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摘要

The stability and support effects of large-scale underground caverns located in jointed rock masses are principally ruled by the mechanical behavior of discontinuities. The major deformations of the host rock masses containing underground caverns originate from the normal and shear movements among the walls of discontinuities. Therefore, in the numerical simulations of the deformation behavior of underground structures, how to accurately model the discontinuities becomes a key problem. In this study, a 2-D distinct element code, UDEC, was used to analyze the deformation behavior of an underground cavern of a pumped storage power plant, based on in-situ geological data. The validity of numerical simulation was evaluated by comparing the numerical results with the site measurement data at two cross-sections of the cavern. Some local deformation behavior of the cavern affected by the characteristics of discontinuity distributions was discussed. The influences of cross-sectional shape of the cavern and the orientation of initial ground stress on the performance of cavern were evaluated. The simulation results revealed that the orientation, position and density of discontinuities as well as the cross-sectional shape of a carven influences its deformation behavior and stability significantly.
机译:位于节理岩体中的大型地下洞室的稳定性和支护作用主要由间断的力学行为决定。包含地下洞穴的主体岩体的主要变形源自不连续壁之间的法向运动和剪切运动。因此,在地下结构变形行为的数值模拟中,如何精确地模拟不连续性成为关键问题。在这项研究中,基于现场地质数据,使用二维不同元素代码UDEC来分析抽水蓄能电站地下洞穴的变形行为。通过将数值结果与洞穴两个横截面处的现场测量数据进行比较,评估了数值模拟的有效性。讨论了受非连续性分布特征影响的洞穴局部变形行为。评估了洞穴的横截面形状和初始地面应力的方向对洞穴性能的影响。仿真结果表明,不连续体的方向,位置和密度以及其横截面形状会显着影响其变形行为和稳定性。

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