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Seismicity and fault interaction, Southern San Jacinto Fault Zone and adjacent faults, southern California: Implications for seismic hazard

机译:地震和断层相互作用,南圣哈辛托断裂带和邻近断层,南加利福尼亚:地震危险的含义

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摘要

The southern San Jacinto fault zone is characterized by high seismicity and a complex fault pattern that offers an excellent setting for investigating interactions between distinct faults. This fault zone is roughly outlined by two subparallel master fault strands, the Coyote Creek and Clark-San Felipe Hills faults, that are located 2 to 10 km apart and are intersected by a series of secondary cross faults. Seismicity is intense on both master faults and secondary cross faults in the southern San Jacinto fault zone. The seismicity on the two master strands occurs primarily below 10 km; the upper 10 km of the master faults are now mostly quiescent and appear to rupture mainly or solely in large earthquakes. Our results also indicate that a considerable portion of recent background activity near the April 9, 1968, Borrego Mountain rupture zone (M_L=6.4) is located on secondary faults outside the fault zone. We name and describe the Palm Wash fault, a very active secondary structure located about 25 km northeast of Borrego Mountain that is oriented subparallel to the San Jacinto fault system, dips approximately 70° to the northeast, and accommodates right-lateral shear motion. The Vallecito Mountain cluster is another secondary feature delineated by the recent seismicity and is characterized by swarming activity prior to nearby large events on the master strand. The 1968 Borrego Mountain and the April 28, 1969, Coyote Mountain (M_L=5.8) events are examples of earthquakes with aftershocks and subevents on these secondary and master faults. Mechanisms from those earthquakes and recent seismic data for the period 1981 to 1986 are not simply restricted to strike-slip motion; dipslip motion is also indicated. Teleseismic body waves (long-period P and SH) of the 1968 and 1969 earthquakes were inverted simultaneously for source mechanism, seismic moment, rupture history, and centroid depth. The complicated waveforms of the 1968 event (M_o=1.2 × 10^(19) Nm) are interpreted in terms of two subevents; the first caused by right-lateral strike-slip motion in the mainshock along the Coyote Creek fault and the second by a rupture located about 25 km away from the master fault. Our waveform inversion of the 1969 event indicates that strike-slip motion predominated, releasing a seismic moment of 2.5 × 10^(17) Nm. Nevertheless, the right-lateral nodal plane of the focal mechanism is significantly misoriented (20°) with respect to the master fault, and hence the event is not likely to be associated with a rupture on that fault. From this and other examples in southern California, we conclude that cross faults may contribute significantly to seismic hazard and that interaction between faults has important implications for earthquake prediction.
机译:南部的圣哈辛托断裂带具有高地震活动性和复杂的断层特征,为调查不同断层之间的相互作用提供了极好的环境。该断层带大致由两个平行的主断层勾勒出轮廓,即郊狼溪和克拉克-圣费利佩希尔斯断层,相距2至10 km,并由一系列次生交叉断层相交。圣哈辛托南部断裂带的主断层和次生交叉断层都具有强烈的地震作用。两条主链的地震活动主要发生在10 km以下。现在,主断裂的上部10 km大部分处于静止状态,似乎主要或仅在大地震中破裂。我们的结果还表明,1968年4月9日Borrego山破裂带(M_L = 6.4)附近的近期背景活动中,有相当一部分位于断层带以外的次生断层上。我们命名和描述Palm Wash断层,这是一个非常活跃的二级构造,位于Borrego山东北约25公里处,其方向与San Jacinto断层系统平行,向东北倾斜约70°,并且可以承受右向剪切运动。 Vallecito山脉是最近的地震活动所描绘的另一个次要特征,其特征是在主链上发生附近的大事件之前发生了蜂群活动。 1968年的Borrego山和1969年4月28日的郊狼山(M_L = 5.8)事件就是这些次级和主断层上发生余震和子事件的地震的例子。这些地震的机理和1981年至1986年的最新地震数据不仅限于走滑运动。还显示了滑倒运动。 1968年和1969年地震的远震体波(长周期P和SH)被同时反转,以反映震源机理,地震矩,破裂历史和质心深度。 1968年事件的复杂波形(M_o = 1.2×10 ^(19)Nm)用两个子​​事件来解释。第一次是由沿Coyote Creek断层的主震中的右旋走滑运动引起的,第二次是由距主断层约25 km的破裂引起的。我们对1969年地震的波形反演表明,走滑运动占主导地位,释放的地震矩为2.5×10 ^(17)Nm。但是,聚焦机构的右侧节点平面相对于主断层的方向明显偏斜(20°),因此该事件不太可能与该断层的破裂有关。从加利福尼亚南部的这个例子和其他例子中,我们得出结论,交叉断层可能对地震危险有重大贡献,并且断层之间的相互作用对地震预测具有重要意义。

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