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The effect of plate-scale rheology and plate interactions on intraplate seismicity

机译:板尺度流变与板相互作用对椎间内膜的影响

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We use finite element modeling to investigate on the stress loading-unloading cycles and earthquakes occurrence in the plate interiors, resulting from the interactions of tectonic plates along their boundary. We model a visco-elasto-plastic plate embedding a single or multiple faults, while the tectonic stress is applied along the plate boundary by an external loading visco-elastic plate, reproducing the tectonic setting of two interacting lithospheres. Because the two plates deform viscously, the timescale of stress accumulation and release on the faults is self-consistently determined, from the boundary to the interiors, and seismic recurrence is an emerging feature. This approach overcomes the constraints on recurrence period imposed by stress (stress-drop) and velocity boundary conditions, while here it is unconstrained. We illustrate emerging macroscopic characteristics of this system, showing that the seismic recurrence period tau becomes shorter as Gamma and Theta decreases, where Gamma = eta(I)/eta(L), the viscosity ratio of the viscosities of the internal fault-embedded to external loading plates, respectively, and Theta = sigma(Y)/sigma(L) the stress ratio of the elastic limit of the fault to far-field loading stress. When the system embeds multiple, randomly distributed faults, stress transfer results in recurrence period deviations, however the time-averaged recurrence period of each fault show the same dependence on Gamma and Theta, illustrating a characteristic collective behavior. The control of these parameters prevails even when initial pre-stress was randomly assigned in terms of the spatial arrangement and orientation on the internal plate, mimicking local fluctuations. Our study shows the relevance of macroscopic rheological properties of tectonic plates on the earthquake occurrence in plate interiors, as opposed to local factors, proposing a viable model for the seismic behavior of continent interiors in the context of large-scale, long-term deformation of interacting tectonic plates. (C) 2017 Elsevier B.V. All rights reserved.
机译:我们使用有限元模型来研究板内部应力加载 - 卸载循环和地震发生,由构造板沿边界的相互作用产生。我们模拟嵌入单个或多个故障的粘弹性板,而通过外部装载粘弹板沿板边界施加构造应力,再现两个相互作用的岩石中的构造凝固。因为两块板敏感性地变形,所以从内侧边界到故障的应力累积和释放的时间质量,并且地震复发是一种新兴特征。这种方法克服了应力(应力 - 滴)和速度边界条件施加的复发周期的约束,而在这里是无约束的。我们说明了这种系统的宏观特征,表明地震复发期Tau随着γ和θ降低而变短,其中γ=η(i)/ eta(l),内部断层嵌入的粘度比外部装载板,分别和θ=σ(y)/ sigma(l)对FAT场负荷应力的断层弹性极限的应力比。当系统嵌入多个随机分布的故障时,应力传递导致复发周期偏差,但是每个故障的时间平均复发周期显示出对伽马和θ的相同依赖性,示出了特征集体行为。即使在内板上的空间布置和方向上随机地分配初始预压力,也可以控制这些参数的控制占上去了,模仿局部波动。我们的研究显示了构造板对板内饰地震发生的宏观流变性质的相关性,而不是当地因素,提出了在大规模,长期变形的背景下的大陆内部地震行为的可行模式互动构造板。 (c)2017年Elsevier B.V.保留所有权利。

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