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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Crustal complexity from regional waveform tomography: Aftershocks of the 1992 Landers earthquake, California
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Crustal complexity from regional waveform tomography: Aftershocks of the 1992 Landers earthquake, California

机译:区域波形层析成像的地壳复杂性:1992年加利福尼亚州兰德斯地震的余震

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We construct a two-dimensional velocity section sampling the Mojave crustal block in southern California by modeling shear wave (SH) seismograms. Our approach uses individual generalized rays computed from a layered model. The model is divided into blocks with variable velocity perturbations such that ray responses are allowed to shift relative to each other to maximize synthetic waveform fits to data. An efficient simulated annealing algorithm is employed in this search. The technique is applied to a collection of 25 aftershocks (Landers earthquake) as recorded at two stations, GSC and PFO, separated by similar to 200 km, which bracket the event population along the Landers fault system. The events are assumed to have known mechanisms and epicenters, but both their depths and origin times are allowed to vary. The results indicate considerable variation, especially in the top layer (up to +/-13%), which mirrors surface geology. Best fitting models contain a low-velocity zone in the lower crust if we constrain the crustal thickness (29 km) from receiver function analysis. Reduced lower crustal velocities imply crustal weakening, which appears compatible with the shallow seismogenic zone found in the northern end of this section. There is also evidence for a lateral jump in velocity of several percent across the San Andreas with the faster velocities on the west. [References: 22]
机译:我们通过对剪切波(SH)地震图建模,构造了一个二维速度剖面,对加利福尼亚南部的莫哈韦地壳块进行了采样。我们的方法使用从分层模型计算出的单个广义射线。该模型被分成具有可变速度扰动的块,以使射线响应彼此相对移动,以使合成波形对数据的拟合最大化。在该搜索中采用了有效的模拟退火算法。该技术应用于25个余震的收集(兰德斯地震),在两个站GSC和PFO记录,相距约200 km,将沿Landers断层系统的事件总体分类。假定这些事件具有已知的机制和震中,但是它们的深度和起源时间都可以改变。结果表明变化很大,尤其是在顶层(最高+/- 13%),反映了表面地质。如果我们根据接收器功能分析来限制地壳厚度(29 km),则最佳拟合模型将在下地壳中包含一个低速带。较低的地壳速度降低意味着地壳变弱,这似乎与该部分北端的浅成地震带兼容。也有证据表明,西部的速度较快时,整个圣安地列斯的速度横向跳跃了几个百分点。 [参考:22]

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