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Seismicity and Stress-Tensor Inversion in the Central Washington Cascade Mountains

机译:华盛顿中部喀斯喀特山脉的地震活动和应力张量反演

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Tectonic stress in the Pacific Northwest Washington is dominated by a N-S major compressive axis, #sigma#_1, and a minor compressive axis, #sigma#_3, which varies from E-W to near vertical. Some variations in this pattern occur in different parts of the region. In this study, we used 550 earthquakes in the central Washington Cascade Mountains to study, in detail, the uniformity of the stress tensor in this volcanic arc. Earthquakes from the P acidic Northwest Seismograph Network (PNSN) catalog were divided into several subsets based on epicentral and depth groupings, and stress-tensor inversions using the Gephart and Forsyth technique were computed for each group. As in previous similar studies, the maximum compressive stress axis, #sigma#_1, is nearly horizontal and trending N-S to NNE-SSW in all but one subset. Shallower events directly under Mount Rainier have a near-vertical #sigma#_1. For other subsets, the minimum compressive stress axis, #sigma#_3, deviates from vertical to horizontal for different groups of events. In particular, events in the depth range of 10 to 14 km in the western Rainier seismic zone (ERSZ) have near-vertical #sigma#_3 orientation. We hypothesize that the change in orientation of #sigma#_3 in the 10 to 14 km depth range in the WRSZ may be due to the influence of the nearby Mount Rainier magmatic system. Independent evidence for magma at this depth comes in the form of a few deep longperiod (LP) events.
机译:西北太平洋华盛顿地区的构造应力主要由N-S主压缩轴#sigma#_1和次要压缩轴#sigma#_3决定,从E-W到接近垂直。该图案的一些变化发生在该区域的不同部分。在这项研究中,我们使用了华盛顿喀斯喀特山脉中部的550次地震来详细研究该火山弧中应力张量的均匀性。根据震中和深度分组将P酸性西北地震仪网络(PNSN)目录中的地震分为几个子集,并使用Gephart和Forsyth技术为每组计算应力张量反演。与以前的类似研究一样,最大压缩应力轴#sigma#_1几乎是水平的,除了一个子集外,其他所有趋势都从N-S到NNE-SSW。雷尼尔山正下方的较浅事件具有近乎垂直的#sigma#_1。对于其他子集,最小压应力轴#sigma#_3对于不同的事件组从垂直偏移到水平。特别是在西部雷尼尔地震带(ERSZ)的10至14 km深度范围内的事件具有接近垂直的#sigma#_3方向。我们假设WRSZ的10至14 km深度范围内#sigma#_3的方向变化可能是由于附近雷尼尔山岩浆系统的影响。在这个深度的岩浆的独立证据以一些深长周期(LP)事件的形式出现。

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