Kim Jeonghyeop, Holt William E, Bahadori Alireza, Shen Weisen
Department of Geosciences Stony Brook University Stony Brook NY USA.
J Geophys Res Solid Earth. 2021 Oct;126(10):e2021JB022188. doi: 10.1029/2021JB022188. Epub 2021 Sep 29.
Here we characterize the 13-year history of nontectonic horizontal strain anomalies across the regions surrounding Ridgecrest, CA, using cGPS data from January 2007. This time-dependent model reveals a seasonality in the nontectonic strain anomalies and the associated Coulomb stress changes of ∼±0.5-2 kPa. In the area surrounding the epicenters of the 2019 Ridgecrest earthquake sequence of July, we find that the seasonal preseismic Coulomb stress changes peaked every early summer (May and June) during the last 13 years including during June 2019, a month prior to the large events. In addition, our statistical tests confirm that more strike-slip earthquakes (M ≥ 2) occur during times when seasonal stress changes are increasing on right-lateral faults in comparison with times when stresses are decreasing. These results suggest that the timing of the 2019 Ridgecrest earthquakes may have been modulated by nontectonic seasonal stress changes. The dynamic source of the seasonal nontectonic strain/stress anomalies, however, remains enigmatic. We discuss a possible combination of driving forces that may be attributable for the seasonal variations in nontectonic strain/stress anomalies, which captured in cGPS measurements.
在这里,我们利用2007年1月以来的连续GPS(cGPS)数据,描述了加利福尼亚州里奇克莱斯特周围地区13年的非构造性水平应变异常历史。这个随时间变化的模型揭示了非构造性应变异常以及相关的库仑应力变化(约±0.5 - 2千帕)的季节性特征。在2019年7月里奇克莱斯特地震序列震中周围地区,我们发现,在过去13年中,包括2019年6月(大地震发生前一个月)在内,季节性震前库仑应力变化在每年初夏(5月和6月)达到峰值。此外,我们的统计测试证实,与应力下降时相比,在右侧走滑断层季节性应力变化增加期间,发生的走滑地震(M≥2)更多。这些结果表明,2019年里奇克莱斯特地震的发生时间可能受到非构造性季节性应力变化的调制。然而,季节性非构造性应变/应力异常的动力来源仍然是个谜。我们讨论了可能导致非构造性应变/应力异常季节性变化的驱动力组合,这些变化在cGPS测量中有所体现。