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Deformation mechanisms and stability analysis of undermined sedimentary rocks in the shallow subsurface

机译:浅层地下沉积岩变形机理及稳定性分析

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摘要

The deformation mechanisms and the stability of an undermined sedimentary rock layers were studied using the numerical model FLAC (Itasca, 2006), specifically validated for such configurations. The lowermost stratum in a sequence of successive layers is modeled as multi-fractured Voussoir beam. Boundary conditions, material properties and geometrical constraints for the numerical modeling were chosen to reflect rock mass properties that are characteristic to sedimentary rock masses. A series of ordered models, spanning over a representative range is presented. The indeterminacy parameters of the Voussoir beam model are determined using non-linear regression of the numerical results over a dimensionless space. The results show that the thickness coefficient of the compressive arch, n, formed within the deflecting beam is non uniform: at the abutment n_a ranges from 0.3 to 0.4 inversely proportional to beam stiffness, at the mid-span n_m ranges from 0.4 to 0.5. Snap-trough failure of the beam occurs for beams of normalized composite stiffness E_N<1.25 - 10~3, for which n_a<0.2. Finally, a straightforward procedure for determining the stability of the Voussoir beam and the Factors of Safety against different failure modes is proposed and the associated uncertainties are discussed. The procedure is applied for back analysis of the roof failure in the ancient underground water reservoir of the UNESCO world heritage site of Tel Beer-Sheva, excavated in discontinuous sedimentary rock mass. It is shown that the proposed procedure can be successfully extrapolated to natural rock masses.
机译:使用数值模型FLAC(Itasca,2006)研究了被破坏的沉积岩层的变形机制和稳定性,并对此结构进行了验证。一系列连续层中的最低层被建模为多重破裂的Voussoir光束。选择边界条件,材料属性和几何约束进行数值模拟,以反映岩性特征,这些特征是沉积岩体的特征。提出了一系列有代表性的模型。 Voussoir光束模型的不确定性参数是使用无量纲空间上数值结果的非线性回归确定的。结果表明,在偏转梁内形成的压缩拱的厚度系数n是不均匀的:在桥台n_a的范围与梁刚度成反比,在0.3到0.4之间,在中跨n_m的范围在0.4到0.5之间。归一化复合刚度E_N <1.25-10〜3的梁发生纵断故障,n_a <0.2。最后,提出了一种简单的方法来确定Voussoir梁的稳定性以及针对不同失效模式的安全系数,并讨论了相关的不确定性。该程序用于对不连续的沉积岩体中挖掘出来的联合国教科文组织世界遗产Tel Beer-Sheva的古代地下水库的屋顶破坏进行反分析。结果表明,所提出的方法可以成功地外推至天然岩体。

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