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A displacement-based back-analysis method for rock mass modulus and horizontal in situ stress in tunneling - Illustrated with a case study

机译:基于位移的岩体模量和水平原位应力反分析方法-以案例研究为例

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摘要

This paper presents a displacement based back-analysis method for the determination of rock mass modulus (E) and the horizontal in situ stress (P) perpendicular to the axis line of the tunnel excavation in hard and intact rock masses. The rock mass is assumed to respond in an isotropic and linear elastic manner. Essentially, the method is a best-fit solution of back-analysis by comparing the measured displacements near a tunnel face during excavation with those calculated using a three-dimensional finite element method. The method can be applied efficiently and effectively by iterative algorithms such as direct search technique and damping least square technique. In particular, a three-dimensional finite element pattern technique (3-D FEPT) is used to compute the theoretical displacements for saving computation time. The method is further illustrated with a case study. The case study deals with a test adit at Zhanghewan Pumped Storage Power Station in Hebei Province, North China. It is shown that the back-analyzed results of E and P are reliable and representative for the actual rock masses.
机译:本文提出了一种基于位移的反分析方法,用于确定坚硬和完整岩石中的岩体模量(E)和垂直于隧道开挖轴线的水平原地应力(P)。假定岩体以各向同性和线性弹性方式响应。从本质上讲,该方法是将开挖期间在隧道工作面附近测得的位移与使用三维有限元方法计算出的位移进行比较,从而得出的最佳分析方法。该方法可以通过迭代算法(例如直接搜索技术和阻尼最小二乘技术)高效有效地应用。特别是,使用三维有限元图案技术(3-D FEPT)来计算理论位移,以节省计算时间。案例研究进一步说明了该方法。该案例研究涉及在华北河北省漳河湾抽水蓄能电站的一次试验。结果表明,E和P的反分析结果是可靠的,可以代表实际的岩体。

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