首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Magnitude and symmetry of seismic anisotropy in mica- and amphibole-bearing metamorphic rocks and implications for tectonic interpretation of seismic data from the southeast Tibetan Plateau
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Magnitude and symmetry of seismic anisotropy in mica- and amphibole-bearing metamorphic rocks and implications for tectonic interpretation of seismic data from the southeast Tibetan Plateau

机译:云母和闪石变质岩中地震各向异性的大小和对称性及其对青藏高原东南部地震数据构造解释的启示

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We calibrated the magnitude and symmetry of seismic anisotropy for 132 mica- or amphibole-bearing metamorphic rocks to constrain their departures from transverse isotropy (TI) which is usually assumed in the interpretation of seismic data. The average bulk V-p anisotropy at 600MPa for the chlorite schists, mica schists, phyllites, sillimanite-mica schists, and amphibole schists examined is 12.0%, 12.8%, 12.8%, 17.0%, and 12.9%, respectively. Most of the schists show V-p anisotropy in the foliation plane which averages 2.4% for phyllites, 3.3% for mica schists, 4.1% for chlorite schists, 6.8% for sillimanite-mica schists, and 5.2% for amphibole schists. This departure from TI is due to the presence of amphibole, sillimanite, and quartz. Amphibole and sillimanite develop strong crystallographic preferred orientations with the fast c axes parallel to the lineation, forming orthorhombic anisotropy with V-p(X)>V-p(Y)>V-p(Z). Effects of quartz are complicated, depending on its volume fraction and prevailing slip system. Most of the mica- or amphibole-bearing schists and mylonites are approximately transversely isotropic in terms of S wave velocities and splitting although their P wave properties may display orthorhombic symmetry. The results provide insight for the interpretation of seismic data from the southeast Tibetan Plateau. The N-S to NW-SE polarized crustal anisotropy in the Sibumasu and Indochina blocks is caused by subvertically foliated mica- and amphibole-bearing rocks deformed by predominantly compressional folding and subordinate strike-slip shear. These blocks have been rotated clockwise 70-90 degrees around the east Himalayan Syntaxis, without finite eastward or southeastward extrusion, in responding to progressive indentation of India into Asia.
机译:我们校准了132个含云母或闪石的变质岩的地震各向异性的大小和对称性,以限制它们偏离横观各向同性(TI),这通常是在解释地震数据时假定的。检验的亚氯酸盐片岩,云母片岩,斜晶石,硅线石-云母片岩和角闪石片岩在600MPa时的平均体积V-p各向异性分别为12.0%,12.8%,12.8%,17.0%和12.9%。多数片岩在叶面均表现出V-p各向异性,其中千枚岩平均为2.4%,云母片平均为3.3%,绿泥石片岩为4.1%,硅线石-云母片为6.8%,角闪石片为5.2%。之所以离开TI是因为存在闪石,硅线石和石英。斜闪石和硅线石形成强晶体学的优选取向,其快速c轴平行于排列,形成正交各向异性,V-p(X)> V-p(Y)> V-p(Z)。石英的影响很复杂,具体取决于其体积分数和主要的滑移系统。尽管它们的P波特性可能表现出正交对称性,但大多数含云母或闪石的片岩和my石在S波速度和分裂方面近似于横向各向同性。这些结果为解释青藏高原东南部的地震数据提供了见识。 Sibumasu和印度支那地块中的N-S到NW-SE极化地壳各向异性是由于主要压缩压缩和次要走滑剪切作用而变形的次生叶状云母和闪石所致。这些块已绕着喜马拉雅山脉的东部顺时针方向旋转了70-90度,而没有向东或向东南方向的有限挤压,以应对印度逐渐向亚洲缩进的反应。

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