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Shear-wave splitting in the crust: Regional compressive stress from polarizations of fast shear-waves

机译:地壳中的剪切波分裂:来自快速剪切波极化的局部压应力

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摘要

When propagating through anisotropic rocks in the crust, shear-waves split into faster and slower components with almost orthogonal polarizations. For nearly vertical propagation the polarization of fast shearwave (PFS) is parallel to both the strike of the cracks and the direction of maximum horizontal stress, therefore it is possible to use PFS to study stress in the crust. This study discusses several examples in which PFS is applied to deduce the compressive stress in North China, Longmenshan fault zone of east edge of Tibetan plateau and Yunnan zone of southeast edge of Tibetan plateau, also discusses temporal variations of PFS orientations of 1999 Xiuyan earthquake sequences of northeastern China. The results are consistent to those of other independent traditional stress measurements. There is a bridge between crustal PFS and the crustal principal compressive stress although there are many unclear disturbance sources. This study suggests the PFS results could be used to deduce regional and in situ principal compressive stress in the crust only if there are enough seismic stations and enough data. At least, PFS is a useful choice in the zone where there are a large number of dense seismic stations.
机译:当通过地壳中的各向异性岩石传播时,剪切波会分裂成具有几乎正交极化的快慢成分。对于近乎垂直的传播,快速剪切波(PFS)的极化与裂缝的走向以及最大水平应力的方向都平行,因此可以使用PFS研究地壳中的应力。本研究讨论了应用PFS推断华北,青藏高原东缘龙门山断裂带和青藏高原东南缘云南带的几个例子,还讨论了1999年Xi岩地震序列的PFS方向随时间变化的情况。中国东北。结果与其他独立的传统应力测量结果一致。尽管有许多不清楚的干扰源,但在地壳PFS和地壳主压应力之间架起了一座桥梁。这项研究表明,只有在有足够的地震台站和足够的数据的情况下,PFS的结果才可以用于推断地壳的区域性和原位主压应力。至少,在有大量密集地震台站的地区,PFS是一个有用的选择。

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