Co- and postseismic stress transfer on different types of faults in Southern Tibet by the 2015 Mw7.8 Gorkha earthquake

IF 2.6 2区 地球科学 Q2 GEOSCIENCES, MULTIDISCIPLINARY
C. Yue , C.Y. Qu , X.F. Li , L.Y. Meng , X.H. Jiang , D.L. Wu
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Abstract

The influence of the 2015 Gorkha earthquake on the co- and postseismic Coulomb Failure Stress (CFS) of faults in Southern Tibet is a scientific issue that warrants further investigation. We employ the flat-ramp fault slip model to calculate the ΔCFS of nearly north-south-trending rifts and east-west-trending faults in Southern Tibet. This analysis considers the Mw7.8 main-shock, the Mw7.3 aftershock, afterslip, and viscoelastic relaxation, utilizing the Burgers rheological model. By integrating the postseismic deformation and b-value, we discuss the differences and similarities in ΔCFS and the underlying mechanisms.
The mainshock, aftershocks, and afterslip exhibit similar patterns of CFS effects, all acting as CFS triggers on the rifts. Viscoelastic relaxation has an unloading effect on the southern portion of the rifts, while it exerts a triggering effect on rifts located farther from the focal area, with the exception of the Dangreyongcuo rift. The influence of CFS on nearly east-west-trending faults is associated with their kinematic characteristics. Coseismic CFS triggering is concentrated in the near-source sections of the normal faults, with viscoelastic relaxation primarily resulting in unloading. The dextral strike-slip faults are governed by shear stress; the eastern sections serve as co- and postseismic CFS triggering areas, while the western sections are characterized as CFS shadow regions. Earthquakes along the Shenzha–Dingjie rift were primarily triggered by co- and postseismic CFS induced by the Gorkha earthquake. In contrast, earthquakes along the Xietongmen rift were mainly associated with elevated stress levels on the fault prior to the earthquake.
2015年廓尔喀Mw7.8地震对藏南不同类型断层的前后应力传递
2015年廓尔喀地震对藏南断裂带地震前后库仑破坏应力(CFS)的影响是一个值得进一步研究的科学问题。采用平斜坡断层滑动模型计算了藏南地区近南北走向裂谷和东西走向断裂的ΔCFS。本分析采用Burgers流变模型,考虑了Mw7.8主震、Mw7.3余震、余震和粘弹性松弛。通过对地震后形变和b值的综合分析,讨论了ΔCFS的异同点及其作用机制。主震、余震和余震表现出相似的CFS效应模式,它们都是CFS对裂谷的触发。粘弹性松弛作用在裂谷南部有卸载作用,而在远离震源区的裂谷有触发作用,但当热永错裂谷除外。CFS对近东西向断层的影响与其运动特征有关。同震CFS触发集中在正断层的近源段,粘弹性松弛主要导致卸荷。右走滑断层受剪应力控制;东段为震源前后触发区,西段为震源阴影区。深寨-定界裂谷沿线地震主要由廓尔喀地震诱发的同震和震后CFS引发。相反,沿谢铜门裂谷的地震主要与地震前断层应力水平升高有关。
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来源期刊
Journal of Structural Geology
Journal of Structural Geology 地学-地球科学综合
CiteScore
6.00
自引率
19.40%
发文量
192
审稿时长
15.7 weeks
期刊介绍: The Journal of Structural Geology publishes process-oriented investigations about structural geology using appropriate combinations of analog and digital field data, seismic reflection data, satellite-derived data, geometric analysis, kinematic analysis, laboratory experiments, computer visualizations, and analogue or numerical modelling on all scales. Contributions are encouraged to draw perspectives from rheology, rock mechanics, geophysics,metamorphism, sedimentology, petroleum geology, economic geology, geodynamics, planetary geology, tectonics and neotectonics to provide a more powerful understanding of deformation processes and systems. Given the visual nature of the discipline, supplementary materials that portray the data and analysis in 3-D or quasi 3-D manners, including the use of videos, and/or graphical abstracts can significantly strengthen the impact of contributions.
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