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Effect of planar structures on the anisotropy of Ranyah sandstone, Saudi Arabia

机译:平面结构对沙特阿拉伯Ranyah砂岩各向异性的影响

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The anisotropy of metamorphic and sedimentary rocks is mainly due to the presence of a single set of discontinuity surfaces such as cleavage, foliation, schistosity, joints, microfissuring or bedding. The uniaxial compressive strength anisotropy curve is usually U-shaped. However, the presence of more than one discontinuity modifies the shape of the anisotropy curve. Therefore, Ranyah sandstone, having two sets of mutually perpendicular discontinuities, was selected and tested. The investigation includes the geological and engineering geological descriptions as well as the classification of the rock mass. It also includes the determination of the physical, mechanical and dynamic properties of the rock material. The most sensitive engineering property to the anisotropic behaviour for Ranyah sandstone was found to be the compressive strength. A W-shaped anisotropy curve was obtained. This shape is due the superimposed effects of the two directions of bedding and microfissures acting almost at right angles to each other, and is in line with Hoek and Brown's (Hoek, E., Brown, E.T., 1980. Underground Excavations in Rock. The Institution of Mining and Metallurgy, London, p.165) hypothesis for two mutually perpendicular discontinuities. A comparison of the anisotropic behaviour of the Ranyah sandstone with same foreign sandstones of different origin was also made.
机译:变质岩和沉积岩的各向异性主要是由于存在一组不连续的表面,例如解理,页岩化,片岩性,节理,微裂缝或层理。单轴抗压强度各向异性曲线通常为U形。但是,不止一个不连续点的存在会改变各向异性曲线的形状。因此,选择并测试了具有两组相互垂直不连续的兰雅砂岩。调查包括地质和工程地质描述以及岩体的分类。它还包括确定岩石材料的物理,机械和动态特性。发现对Ranyah砂岩各向异性行为最敏感的工程特性是抗压强度。获得了W形的各向异性曲线。这种形状是由于层理和微裂缝的两个方向几乎相互成直角的叠加作用所致,并且与Hoek和Brown的观点一致(Hoek,E.,Brown,ET,1980。岩石中的地下挖掘。伦敦采矿和冶金学会,第165页)的假设是两个相互垂直的不连续点。还对Ranyah砂岩与不同来源的相同外来砂岩的各向异性进行了比较。

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