首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Directional dependence of P- and S-wave propagation and polarization in foliated rocks from the Kola superdeep well: Evidence from laboratory measurements and calculations based on TOF neutron diffraction
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Directional dependence of P- and S-wave propagation and polarization in foliated rocks from the Kola superdeep well: Evidence from laboratory measurements and calculations based on TOF neutron diffraction

机译:来自科拉超深井的片状岩石中P波和S波传播和极化的方向相关性:基于TOF中子衍射的实验室测量和计算的证据

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We have measured P- and S-wave velocities on two amphibolite and two gneiss samples from the Kola superdeep borehole as a function of pressure (up to 600 MPa) and temperature (up to 600 degrees C). The velocity measurements include compressional (Vp) and shear wave velocities (Vs1, Vs2) propagating in three orthogonal directions which were in general not parallel to inherent rock symmetry axes or planes. The measurements are accompanied by 3D-velocities calculations based on lattice preferred orientation (LPO) obtained by TOF (Time Of Flight) neutron diffraction analysis which allows the investigation of bulk volumes up to several cubic centimetres due to the high penetration depth of neutrons. The LPO-based numerical velocity calculations give important information on the different contribution of the various rock-forming minerals to bulk elastic anisotropy and on the relations of seismic anisotropy, shear wave splitting, and shear wave polarization to the structural reference frame (foliation and lineation). Comparison with measured velocities obtained for the three propagation directions that were not in accordance with the structural frame of the rocks (foliation and lineation) demonstrate that for shear waves propagating through anisotropic rocks the vibration directions are as important as the propagation directions. The study demonstrates that proper measurement of shear wave splitting by means of two orthogonal polarized sending and receiving shear wave transducers is only possible when their propagation and polarization directions are parallel and normal to foliation and lineation, respectively. (c) 2005 Elsevier B.V. All rights reserved.
机译:我们已经测量了来自可乐超深井眼的两个闪石和两个片麻岩样品的P波和S波速度随压力(高达600 MPa)和温度(高达600摄氏度)的变化。速度测量包括沿三个正交方向传播的压缩(Vp)和剪切波速度(Vs1,Vs2),这些方向通常不平行于固有的岩石对称轴或平面。测量伴随着基于TOF(飞行时间)中子衍射分析获得的基于晶格优先取向(LPO)的3D速度计算,由于中子的高穿透深度,该研究可以研究高达几立方厘米的体积。基于LPO的数值速度计算提供了重要信息,说明了各种成岩矿物对体积弹性各向异性的不同贡献,以及地震各向异性,剪切波分裂和剪切波极化与结构参考系(页岩和衬砌)的关系。 )。与在三个与岩石的结构框架(页岩和线形)不符的传播方向上测得的速度进行的比较表明,对于通过各向异性岩石传播的剪切波,振动方向与传播方向同样重要。研究表明,只有当两个正交极化发送和接收切变换能器的传播方向和偏振方向平行且垂直于叶面和线条时,才可能正确测量切变波的分裂。 (c)2005 Elsevier B.V.保留所有权利。

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