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Models of Stochastic, Spatially Varying Stress in the Crust Compatible with Focal-Mechanism Data, and How Stress Inversions Can Be Biased toward the Stress Rate

机译:与震源机制数据兼容的地壳中随机,空间变化应力模型,以及如何将应力反演偏向应力率

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摘要

Evidence suggests that slip in earthquakes and the resultant stress changes are spatially heterogeneous. If crustal stress from past earthquakes is spatially heterogeneous, then earthquake focal mechanisms should also be spatially variable. We describe the statistical attributes of simulated earthquake catalogs, including hypocenters and focal mechanisms, for a spatially 3D, time-varying model of the crustal stress tensor with stochastic spatial variations. It is assumed that temporal variations in stress are spatially smooth and are primarily caused by plate tectonics. Spatial variations in stress are assumed to be the result of past earthquakes and are independent of time for periods between major earthquakes. It is further assumed that heterogeneous stress canudbe modeled as a stochastic process that is specified by an autocorrelation function. Synthetic catalogs of earthquake hypocenters and their associated focal mechanisms are produced by identifying the locations and times at which the second deviatoric stress invariant exceeds a specified limit. The model produces a seismicity catalog that isudspatially biased. The only points in the grid that exceed the failure stress are those where the heterogeneous stress is approximately aligned with the stress rate. This bias results in a focal-mechanism catalog that appears less heterogeneous than the underlying stress orientations. Comparison of synthetic focal-mechanism catalogs with catalogs of real earthquakes suggests that stress in the crust is heterogeneous. Stochastic parameters are estimated which generate distance dependent spatial variations in focal mechanisms similar to those reported by Hardebeck (2006) for southern California.
机译:有证据表明,地震中的滑动和由此产生的应力变化在空间上是不均匀的。如果过去地震的地壳应力在空间上是非均质的,那么地震震源机制也应该在空间上是可变的。我们描述了具有随机空间变化的地壳应力张量的空间3D时变模型的模拟地震目录的统计属性,包括震源和震源机制。假定应力的时间变化在空间上是平滑的,并且主要是由板块构造引起的。应力的空间变化被认为是过去地震的结果,并且与大地震之间的时间无关。进一步假设可以将异质应力建模为由自相关函数指定的随机过程。地震震源的综合目录及其相关的震源机制是通过识别第二个偏应力不变式超过指定限制的位置和时间来生成的。该模型将产生空间偏倚的地震活动目录。网格中唯一超过破坏应力的点是那些非均质应力与应力率近似对齐的点。这种偏倚导致焦点机制目录看起来比基本应力方向的异质性更低。合成震源机制目录与真实地震目录的比较表明,地壳中的应力是非均质的。估计随机参数会在震源机制中产生与距离相关的空间变化,类似于Hardebeck(2006)对南加州的报道。

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