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Separating rapid relocking, afterslip, and viscoelastic relaxation: An application of the postseismic straightening method to the Maule 2010 cGPS

机译:分离快速重新锁定,后滑和粘弹性松弛:将震后矫直方法应用于maule 2010 cGps

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摘要

The postseismic deformation captured with continuous Global Positioning System (cGPS) monitoring following many recent megathrust events has been shown to be a signal composed of two dominant processes: afterslip on the plate interface and viscoelastic relaxation of the continental and oceanic mantles in response to the coseismic stress perturbation. Following the south central Chile 2010 Maule M-w 8.8 earthquake, the time series from the regional cGPS network show a distinct curvature in the pathway of the horizontal motion that is not easily fit by a stationary decaying pattern of afterslip in combination with viscoelastic relaxation. Here we show that with realistic assumptions about the long-term decay of the afterslip signal, the postseismic signal can be decomposed into three first-order contributing processes: plate interface relocking, plate interface afterslip, and mantle viscoelastic relaxation. From our analyses we conclude that the plate interface recovers its interseismic locking state rapidly (model space ranges between an instant recovery and a period of 1 year), a finding that supports laboratory experimental evidence as well as some recent studies of aftershocks and postseismic surface deformation. Furthermore, relocking is the main cause of the curvature in the cGPS signal, and this study presents a plausible range of geodetic relocking rates following a megathrust earthquake
机译:在最近的多次大推力事件之后,通过连续全球定位系统(cGPS)监测所捕获的地震后变形已显示是一个由两个主要过程组成的信号:板块界面上的滑移以及大陆和海洋地幔对同震的响应的粘弹性松弛应力扰动。继智利中南部2010年Maule M-w 8.8地震之后,来自地区cGPS网络的时间序列显示出水平运动路径中明显的曲率,这不易通过后滑的固定衰减模式以及粘弹性松弛来拟合。在这里,我们表明,根据关于滑移信号长期衰减的现实假设,地震后信号可以分解为三个一阶贡献过程:板界面重新锁定,板界面后滑和地幔粘弹性松弛。根据我们的分析,我们得出结论,板块界面迅速恢复了其间震锁定状态(模型空间范围介于即时恢复和1年之间),这一发现支持实验室实验证据以及余震和震后表面变形的一些最新研究。此外,重新锁定是cGPS信号曲率的主要原因,这项研究提出了大推力地震后大地重新锁定率的合理范围

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