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Foreshock sequence of the 1992 Landers, California, earthquake and its implications for earthquake nucleation

机译:1992年兰德斯,加利福尼亚地震的前震序列及其对地震成核的影响

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摘要

The June 28, 1992, Landers, California, earthquake(Mw=7.3) was preceded for about 7 hours by a foreshock sequence consisting of at least 28 events. In this study we examine the geometry and temporal development of the foreshocks using high-precision locations based on cross correlation of waveforms recorded at nearby stations. By aligning waveforms, rather than trying to obtain travel time picks for each event independently, we are able to improve the timing accuracy greatly and to make very accurate travel time picks even for emergent arrivals. We perform a joint relocation using the improved travel times and reduce the relative location errors to less than 100m horizontally and less than 200m vertically. With the improved locations the geometry of the foreshock sequence becomes clear. The Landers foreshocks occurred at a fight step of about 500m in the mainshock fault plane. The nucleation zone as defined by the foreshock sequence is southeast trending to the south and nearly north trending to the north of the right step. This geometry is confirmed by the focal mechanisms of the foreshock sequence, which are rightlateral and follow the trend as determined by the foreshock locations on the two straight segments of the fault, and are rotated clockwise for foreshocks that occur within the step. The extent of the foreshock sequence is approximately 1 km both vertically and horizontally. Modeling of the Coulomb stress changes due to all previous foreshocks indicates that the foreshocks probably did not trigger each other. This result is particularly clear for the Mw=4.4 immediate foreshock. Since stress transfer in the sequence appears not to have played a significant role in its development, we infer an underlying aseismic nucleation process, probably aseismic creep. Other studies have shown that earthquake nucleation may be controlled by fault zone irregularities. This appears to be true in the case of the Landers earthquake, although the size of the irregularity is so small that it is not detectable by standard location techniques.
机译:1992年6月28日,加利福尼亚州兰德斯地震(Mw = 7.3)发生了大约7个小时的前震序列,其中包括至少28个事件。在这项研究中,我们根据附近站点记录的波形的互相关性,使用高精度位置检查前震的几何形状和时间变化。通过对齐波形,而不是试图独立获取每个事件的旅行时间选择,我们能够大大提高计时精度,甚至对于紧急到达也可以做出非常准确的旅行时间选择。我们使用改进的行程时间进行联合搬迁,并将相对位置误差减少到水平方向小于100m,垂直方向小于200m。随着位置的改善,前震序列的几何形状变得清晰。着陆器前震发生在主震断层平面约500m的战斗距离处。由前震序列定义的成核区是东南向南趋向,近北趋向右阶以北。该几何形状由前震序列的震源机制确定,这些震源机制位于断层的两个笔直段上的前震位置所确定的右旋方向,并顺着趋势方向旋转,以应对台阶内发生的前震。前震序列的范围在垂直和水平方向都约为1 km。对所有先前的前震造成的库仑应力变化进行建模表明,前震可能不会互相触发。对于Mw = 4.4立即前兆,此结果特别明显。由于序列中的应力传递似乎并未在其发展中发挥重要作用,因此我们推断出潜在的抗震成核过程,可能是抗震蠕变。其他研究表明,地震成核作用可能由断层带的不规则性控制。尽管不规则的大小非常小,以至于无法通过标准定位技术检测到,但在Landers地震中这似乎是正确的。

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