首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >The Relationship Between Seismic and Aseismic Slip on the Philippine Fault on Leyte Island: Bayesian Modeling of Fault Slip and Geothermal Subsidence
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The Relationship Between Seismic and Aseismic Slip on the Philippine Fault on Leyte Island: Bayesian Modeling of Fault Slip and Geothermal Subsidence

机译:莱特岛菲律宾断层地震与抗震滑坡的关系:贝叶斯造型故障滑动和地热沉降

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Delineating seismic and aseismic slip on faults allows the exploration of the complex relationship between these different modes of slip. Further, quantifying them helps in the assessment of seismogenic potential. We present a distributed slip model of the rate of aseismic slip along the Leyte island section of the Philippine Fault and make comparisons with the extent of seismic slip from the latest significant earthquakes in July 2017. We derived both coseismic and aseismic slip distributions from kinematic inversions of synthetic aperture radar interferometric (InSAR) observations using a probabilistic (Bayesian) framework. Velocity maps from stacking and time series analysis of ALOS interferograms spanning 4 years (2007-2011) show a step change in ground deformation right on the fault. Inverting for slip at depth reveals along-strike variations of aseismic slip rate over similar to 100 km. Aseismic slip on the surface reaches rates of more than 3 cm/yr, equivalent to the long-term slip rate (3.3 +/- 0.2 cm/yr). Over the same period, a 20-km segment in Tongonan appears to be locked. This segment ruptured in M-w 6.5 and M-w 5.8 earthquakes on 6 and 10 July 2017, respectively, as constrained by Sentinel-1 and ALOS-2 InSAR data. Seismic slip appears to be restricted within the Tongonan segment, with up to 152 +/- 21 cm of left-lateral displacement. The slip budget and complementarity between the extents of interseismic and coseismic slip suggest that a seismogenic asperity exists in Tongonan. The presence of active hydrothermal systems and rate-strengthening materials provide physical conditions that can promote aseismic slip.
机译:通过圈定地震和抗震滑动断层,可以探索这些不同滑动模式之间的复杂关系。此外,量化它们有助于评估孕震潜力。我们提出了菲律宾断层莱特岛段抗震滑动速率的分布滑动模型,并与2017年7月最新重大地震的地震滑动程度进行了比较。我们使用概率(贝叶斯)框架,从合成孔径雷达干涉测量(InSAR)观测的运动学反演中导出了同震和抗震滑动分布。对跨越4年(2007-2011年)的ALOS干涉图进行叠加和时间序列分析得到的速度图显示,断层右侧的地面变形发生了阶跃变化。深度滑动反演揭示了沿走向的抗震滑动率的变化,大约为100 km。地表的抗震滑动速率超过3厘米/年,相当于长期滑动速率(3.3+/-0.2厘米/年)。在同一时期,汤戈南一段20公里长的路段似乎被封锁。受Sentinel-1和ALOS-2 InSAR数据的约束,该段分别在2017年7月6日和10日的M-w 6.5和M-w 5.8地震中破裂。地震滑动似乎限制在Tongonan段内,左侧位移高达152+/-21 cm。滑动预算以及震间滑动和同震滑动范围之间的互补性表明,汤戈南存在孕震凹凸不平。活跃的热液系统和速率增强材料的存在提供了促进抗震滑动的物理条件。

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