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The role of seismic methods in investigation of rock mass

机译:地震方法在岩体调查中的作用

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The existence of cracks in a rock mass causes the reduction of seismic wave velocity and the anisotropy of seismic wave velocity, which is characteristic for rocks with preferred orientation of cracks. The present study concerns sedimentary rocks (sandstone, limestone) and igneous rocks (basalt, granite). Studying the relationship between seismic anisotropy and cracks anisotropy in rocks I was only interested in fractures perpendicular to the layering. This allowed me to calculate two-dimensional crack tensors and velocity tensors in planes parallel to the layer surface. An application of tensor calculus enables to take into account both geometry and orientation of cracks. The obtained results confirm that the directions of major axes of second-rank velocity tensor prove the relationship consistent with predictions of theoretical models. Owing to these dependences, seismic methods can be used to study the cracks anisotropy in rocks inaccessible for direct observations.
机译:岩体中裂缝的存在会导致地震波速度的降低和地震波速度的各向异性,这是具有较好裂缝方向的岩石的特征。本研究涉及沉积岩(砂岩,石灰石)和火成岩(玄武岩,花岗岩)。研究岩石的地震各向异性与裂缝各向异性之间的关系,我只对垂直于分层的裂缝感兴趣。这使我能够在平行于层表面的平面中计算二维裂纹张量和速度张量。张量演算的应用能够同时考虑裂纹的几何形状和方向。得到的结果证实了第二速度张量的主轴方向证明了该关系与理论模型的预测是一致的。由于这些依赖性,地震方法可用于研究无法直接观察的岩石中的裂缝各向异性。

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