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State of Stress from Focal Mechanisms Before and After the 1992 Landers Earthquake Sequence

机译:1992年Landers地震序列前后震源机制的应力状态。

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摘要

The state of stress in the Eastern California Shear Zone (ECSZ) changed significantly because of the occurrence of the 1992 M_w 6.1 Joshua Tree and the M_W 7.3 Landers earthquakes. To quantify this change, focal mechanisms from the 1975 Galway Lake sequence, the 1979 Homestead Valley sequence, background seismicity from 1981 to 1991, and the 1992 Landers sequence are inverted for the state of stress. In all cases, the intermediate principal stress axis (S2) remained vertical, and changes in the state of stress consisted of variations in the trend of maximum and minimum principal stress axes (S_1 and S_3) and small variations in the value of the relative stress magnitudes (ϕ). In general, the stress state in the ECSZ has S_1 trending east of north and ϕ = 0.43 to 0.65, suggesting that the ECSZ is a moderate stress refractor and the style of faulting is transtensional.udSouth of the Pinto Mountain fault, in the region of the 1992 Joshua Tree earthquake, the stress state determined from the 1981 to 1991 background seismicity changed on 23 April and again on 28 June 1992. In the central zone, S_1 rotated from N14° ± 5°E to N28° ± 5°E on 23 April and back again to N16° ± 5°E on 28 June. Thus, the Landers mainshock in effect recharged some of the shear stress in the region of the M_w 6.1 Joshua Tree earthquake.udComparison of the state of stress before and after 28 June 1992, along the Landers mainshock rupture zone, showed that the mainshock changed the stress orientation. The S1 trend rotated 7° to 20° clockwise and became progressively more fault normal from south to north. Along the Emerson-Camp Rock faults, the variation was so prominent that the focal mechanisms of aftershocks could not be fit by a single deviatoric stress tensor. The complex distribution of P and T axes suggests that most of the uniform component of the applied shear stress along the northern part of the rupture zone was released in the mainshock.udThe San Bernardino Mountains region of the M_w 6.2 Big Bear earthquake has a distinctively different state of stress, as compared to the Landers region, with S_1 trending N3° ± 5°W. This region did not show any significant change in the state of stress following the 1992 M_w 6.2 Big Bear sequence.
机译:由于发生了1992年M_w 6.1约书亚树和M_W 7.3登陆器地震,东部加利福尼亚剪切带(ECSZ)的应力状态发生了显着变化。为了量化这种变化,对1975年的戈尔韦湖序列,1979年的霍姆斯特德谷序列,1981年至1991年的背景地震活动以及1992年的兰德斯序列的震源机制进行了反演。在所有情况下,中间主应力轴(S2)保持垂直,应力状态的变化包括最大和最小主应力轴(S_1和S_3)的趋势变化以及相对应力值的小变化大小(ϕ)。通常,ECSZ的应力状态具有S_1向北偏北的趋势,0.4 = 0.43至0.65,这表明ECSZ是中等应力折射体,断层的类型为张性。 ud在该地区的平托山断裂带以南在1992年约书亚树地震中,从1981年至1991年背景地震活动确定的应力状态在1992年4月23日和1992年6月28日再次发生变化。在中心区域,S_1从N14°±5°E旋转到N28°±5°E在4月23日,并在6月28日再次回到N16°±5°E。因此,Landers主震实际上补充了M_w 6.1约书亚树地震区域的一些剪应力。 ud 1992年6月28日前后,沿着Landers主震破裂带的应力状态比较表明,主震发生了变化。应力方向。 S1趋势沿顺时针方向旋转7°至20°,并逐渐从南向北逐渐成为断层正态。沿Emerson-Camp岩石断层,变化非常明显,以至于余震的震源机制无法用单个偏应力张量来拟合。 P轴和T轴的复杂分布表明,沿着破裂带北部施加的切应力的大部分均匀分量在主震中释放。 udM_w 6.2大熊地震的圣贝纳迪诺山地区有明显的与Landers区域相比,应力状态不同,S_1的趋势为N3°±5°W。在1992 M_w 6.2大熊序列之后,该区域的应力状态没有任何明显变化。

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    Hauksson Egill;

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