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Lattice-Preferred orientations of olivine in subducting oceanic lithosphere derived from the observed seismic anisotropies in double seismic zones

机译:从双地震带观测到的地震各向异性推导的俯冲海洋岩石圈中橄榄石的晶格优先取向

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Abstract Subduction zones can generally be classified into Mariana type and Chilean type depending on plate ages, plate thicknesses, subduction angles, back-arc deformation patterns, etc. The double seismic zones (DSZs) in subduction zones are mainly divided into type I and type II which, respectively, correspond to the Mariana type and Chilean type in most cases. Seismic anisotropy is an important parameter characterizing the geophysical features of the lithosphere, including the subduction zones, and can be described by the two parameters of delay time δt and fast wave polarization direction ? . We totally collected 524 seismic anisotropy data records from 24 DSZs and analyzed the statistical correlations between seismic anisotropy and the related physical parameters of DSZs. Our statistical analysis demonstrated that the fast wave polarization directions are parallel to the trench strike with no more than 30° for most type I DSZs, while being nearly perpendicular to the trench strike for type II DSZs. We also calculated roughly linear correlations that the delay time δt increases with dip angles but decreases with subduction rates. A linear equation was summarized to describe the strong correlation between DSZ’s subduction angle α ~(DSZ) and seismic anisotropy in subduction zones. These results suggest that the anisotropic structure of the subducting lithosphere can be described as a possible equivalent crystal similar to the olivine crystal with three mutually orthogonal polarization axes, of which the longest and the second axes are nearly along the trench-perpendicular and trench-parallel directions, respectively.
机译:摘要根据板块年龄,板块厚度,俯冲角,弧后变形模式等,俯冲带大致可分为马里亚纳型和智利型。俯冲带中的双重地震带(DSZs)主要分为I类和I类。 II在大多数情况下分别对应于Mariana型和Chilean型。地震各向异性是表征岩石圈包括俯冲带在内的地球物理特征的重要参数,可以用延迟时间δt和快速波极化方向β的两个参数来描述。 。我们总共收集了来自24个DSZ的524个地震各向异性数据记录,并分析了地震各向异性与DSZ的相关物理参数之间的统计相关性。我们的统计分析表明,对于大多数I型DSZ,快速波极化方向与沟槽走向平行,不超过30°,而对于II型DSZ,其几乎垂直于沟槽走向。我们还计算了大致的线性相关性,即延迟时间δt随着倾角的增加而增加,但随着俯冲率的增加而减少。总结了一个线性方程,描述了DSZ俯冲角α〜(DSZ)与俯冲带地震各向异性之间的强相关性。这些结果表明,俯冲岩石圈的各向异性结构可以描述为可能的等效晶体,类似于具有三个相互正交的极化轴的橄榄石晶体,其中最长轴和第二轴几乎沿沟槽垂直和平行于沟槽。方向。

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