首页> 外文期刊>Arabian journal of geosciences >Effect of foliation orientation on the P- and S-wave velocity anisotropies and dynamic elastic constants of the quartz-micaschists metamorphic rocks, Angouran mine, Iran
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Effect of foliation orientation on the P- and S-wave velocity anisotropies and dynamic elastic constants of the quartz-micaschists metamorphic rocks, Angouran mine, Iran

机译:叶面取向对伊朗安古拉金矿石英云母变质岩纵波和横波速度各向异性及动弹性常数的影响

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Laboratory measurements are required to study geophysical properties of the subsurface because of lacking direct observation of Earth's crust. In this research, compressional (P) and shear (S) wave velocity measurements have been conducted on cylindrical specimens of Quartz-micaschist cored using rock blocks taken from the zinc and lead Angouran mine, Zanjan, northwest of Iran. Cylindrical rock specimens were prepared from the blocks by coring in 0 degrees, 30 degrees, 45 degrees, 60 degrees, and 90 degrees into the foliation direction. P-and Swave velocities were measured along the cylindrical specimens with different foliation orientations. Percent variations of the P-and S-wave velocities (Thomsen's anisotropic parameters epsilon and gamma) and constant dynamic modulus of test results have been determined. Percent variations of the P-wave velocity (e) increase with an increase of the foliation angle with respect to the propagating waves direction by a parabolic function as it shows P-wave velocity differences up to a maximum value of 50 %. Thomsen's anisotropic parameter of gamma has also the same function with the foliation angle. Meanwhile, foliation orientation has a much greater influence on epsilon than gamma for foliation angle from 45 degrees to 90 degrees as epsilon/gamma ratio increases with an increase of foliation angle. Values of dynamic elastic modulus (E), Poisson's ratio (nu), shear modulus (mu), bulk modulus (K), and Lam's constant (lambda) increase with the increase of foliation angle with the parabolic function. The results show that dynamic elastic modulus, Poisson's ratio, shear modulus, bulk modulus, and Lam's constant have anisotropic behavior in relation with the foliation orientation.
机译:由于缺乏对地壳的直接观察,需要实验室测量来研究地下的地球物理性质。在这项研究中,已经对取自伊朗西北部赞詹(Zanjan)锌和铅安古拉金矿的岩石块取芯的石英-云母柱状样品进行了压缩(P)和剪切(S)波速测量。从块体中,沿叶片方向分别在0度,30度,45度,60度和90度取芯,以制备圆柱状岩石标本。沿具有不同叶片方向的圆柱试样测量了P波和Swave速度。确定了P波和S波速度的变化百分比(Thomsen的各向异性参数epsilon和γ)以及测试结果的恒定动态模量。通过抛物线函数,随着波前角相对于传播波方向的增加,P波速度(e)的百分比变化也随之增加,因为它显示出P波速度差最大为50%。汤姆森的伽玛各向异性参数也具有与叶角相同的功能。同时,当ε/γ比随叶夹角的增加而增加时,从45度到90度的叶夹角,叶的定向对ε的影响比γ大。随着叶片抛物线角函数的增加,动弹性模量(E),泊松比(nu),剪切模量(mu),体积模量(K)和Lam常数(λ)的值都增加。结果表明,动态弹性模量,泊松比,剪切模量,体积模量和Lam常数与叶面取向有关,具有各向异性。

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