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Determination of the elastic modulus set of foliated rocks from ultrasonic velocity measurements

机译:通过超声速度测量确定片状岩石的弹性模量

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Ultrasonic measurements of compressional and shear wave velocities under hydrostatic pressure up to 70 MPa were carried out on cylindrical specimens cored across and along the foliation planes. Our measurements revealed that the foliation of the metamorphic rocks induces a clear velocity anisotropy between two orthogonal directions; faster along the foliation plane and slower across the plane in most rock types. All velocity components monotonically increase with the confining pressure, probably due to the closure of microcracks distributed in rock specimens. We determined the complete set of dynamic moduli of foliated metamorphic rocks with two assumptions; transverse isotropy due to the foliation and ellipsoidal seismic energy propagation from a point source. The calculated elastic moduli referring to different directions could be valuable for the design of various engineering structures in planar textured rock mass.
机译:在高达70 MPa的静水压力下,对横跨和沿着叶面的岩心圆柱样品进行超声测量。我们的测量结果表明,变质岩的页岩在两​​个正交方向之间引起明显的速度各向异性。在大多数岩石类型中,沿着叶面平面更快,而在整个平面上速度较慢。所有速度分量都随围压而单调增加,这可能是由于分布在岩石样本中的微裂纹的闭合所致。我们用两个假设确定了叶状变质岩的完整动态模量。由于点源的叶状和椭圆形地震能量传播而产生的横向各向同性。计算得出的指向不同方向的弹性模量对于平面纹理岩体中各种工程结构的设计可能是有价值的。

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