首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Shocks in a box: An analogue model of subduction earthquake cycles with application to seismotectonic forearc evolution
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Shocks in a box: An analogue model of subduction earthquake cycles with application to seismotectonic forearc evolution

机译:盒子里的冲击:俯冲地震周期的模拟模型及其在地震构造前臂演化中的应用

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摘要

We introduce and test an experimental approach to simulate elastoplastic megathrust earthquake cycles using an analogue model and apply it to study the seismotectonic evolution of subduction zones. The quasi-two-dimensional analogue model features rate- and state-dependent elastic-frictional plastic and viscoelastic material properties and is scaled for gravity, inertia, elasticity, friction, and viscosity. The experiments are monitored with a high-resolution strain analysis tool based on digital image correlation (particle imaging velocimetry, PIV), providing deformation time series comparable to seismologic, geodetic, and geologic observations. In order to separate elastic and nonelastic effects inherent the experimental deformation patterns, we integrate elastic dislocation modeling (EDM) into a hybrid approach: we use the analogue earthquake slip and interseismic locking distribution as EDM dislocation input and forward model the coseismic and interseismic elastic response. The residual, which remains when the EDM prediction is subtracted from the experimental deformation pattern, highlights the accumulation of permanent deformation in the model. The setup generates analogue earthquake sequences with realistic source mechanisms and elastic forearc response and recurrence patterns and reproduces principal earthquake scaling relations. By applying the model to an accretionary-type plate margin, we demonstrate how strain localization at the rupture peripheries may lead to a seismotectonically segmented forearc, including a tectonically stable shelf and coastal high (<20% plate convergence accommodated by internal shortening) overlying the area of large megathrust earthquake slip. Fifty to 75% of plate convergence is accommodated by internal shortening in the slope region where earthquake slip tapers out toward the trench. The inner forearc region remains undeformed and represents a basin.
机译:我们引入并测试了一种使用模拟模型模拟弹塑性大推力地震周期的实验方法,并将其应用于研究俯冲带的地震构造演化。准二维模拟模型具有速率和状态相关的弹性摩擦塑料和粘弹性材料的特性,并按重力,惯性,弹性,摩擦和粘度进行缩放。使用基于数字图像相关性的高分辨率应变分析工具(颗粒成像测速仪,PIV)对实验进行监控,提供与地震,大地测量和地质观测结果相当的变形时间序列。为了分离实验变形模式固有的弹性和非弹性效应,我们将弹性位错建模(EDM)集成到一种混合方法中:我们将模拟地震滑动和间震锁定分布用作EDM错位输入,并对同震和间震弹性响应进行正向建模。当从实验变形模式中减去EDM预测时,残留的残留量突出显示了模型中永久变形的累积。该装置生成具有现实震源机制,弹性前臂响应和复发模式的模拟地震序列,并再现主要的地震比例关系。通过将该模型应用于增生型板缘,我们证明了在破裂周缘处的应变局部化如何导致地震构造分段的前臂,包括构造稳定的架子和沿岸的高位(内部缩短导致板块收敛小于20%)。大推力地震滑移区。在地震滑移向沟槽逐渐减小的斜坡区域,内部缩短可容纳板状收敛的百分之五十至百分之七十五。前臂内侧区域未变形,代表一个盆地。

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