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Dislocation models of interseismic deformation in the western United States

机译:美国西部苦易变形的错位模型

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The GPS-derived crustal velocity field of the western United States is used to construct dislocation models in a viscoelastic medium of interseismic crustal deformation. The interseismic velocity field is constrained by 1052 GPS velocity vectors spanning the ~2500-km-long plate boundary zone adjacent to the San Andreas fault and Cascadia subduction zone and extending ~1000 km into the plate interior. The GPS data set is compiled from U.S. Geological Survey campaign data, Plate Boundary Observatory data, and the Western U.S. Cordillera velocity field of Bennett et al. (1999). In the context of viscoelastic cycle models of postearthquake deformation, the interseismic velocity field is modeled with a combination of earthquake sources on ~100 known faults plus broadly distributed sources. Models that best explain the observed interseismic velocity field include the contributions of viscoelastic relaxation from faulting near the major plate margins, viscoelastic relaxation from distributed faulting in the plate interior, as well as lateral variations in depth-averaged rigidity in the elastic lithosphere. Resulting rigidity variations are consistent with reduced effective elastic plate thickness in a zone a few tens of kilometers wide surrounding the San Andreas fault (SAF) system. Primary deformation characteristics are captured along the entire SAF system, Eastern California Shear Zone, Walker Lane, the Mendocino triple junction, the Cascadia margin, and the plate interior up to ~1000 km from the major plate boundaries.
机译:美国西部的GPS衍生的地壳速度场用于构建缺陷地壳变形的粘弹性介质中的位错模型。志可行的速度场受到跨越与San Andreas故障和Cascadia俯冲区相邻的〜2500公里长的板边界区的1052GPS速度矢量,并将〜1000km延伸到板内部。 GPS数据集由U.S.地质调查活动数据,板边界天文台数据和Bennett等人的西部美国速度场。 (1999)。在粘弹性循环模型的粘弹性循环模型的上下文中,故事速度场模拟了地震来源的组合,在〜100个已知的故障加上广泛分布的源。最佳解释所观察到的故事速度场的模型包括粘弹性松弛在主板边缘附近的缺陷的贡献,从板内部的分布式断层粘弹性松弛,以及弹性岩层中的深度平均刚度的横向变化。产生的刚性变化与围绕San Andreas故障(SAF)系统的几千米宽的区域中的有效弹性板厚度降低。沿整个SAF系统,东加州剪切区,沃克巷,门眼电池三交界处,Cascadia余量和板内部距离主要板边界,距主要板边界的初级变形特性。

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