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Localized and distributed creep along the southern San Andreas Fault

机译:沿圣安德烈亚斯断层南部的局部分布蠕变

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摘要

We investigate the spatial pattern of surface creep and off-fault deformation along the southern segment of the San Andreas Fault using a combination of multiple interferometric synthetic aperture radar viewing geometries and survey-mode GPS occupations of a dense array crossing the fault. Radar observations from Envisat during the period 2003–2010 were used to separate the pattern of horizontal and vertical motion, providing a high-resolution image of uplift and shallow creep along the fault trace. The data reveal pervasive shallow creep along the southernmost 50 km of the fault. Creep is localized on a well-defined fault trace only in the Mecca Hills and Durmid Hill areas, while elsewhere creep appears to be distributed over a 1–2 km wide zone surrounding the fault. The degree of strain localization is correlated with variations in the local fault strike. Using a two-dimensional boundary element model, we show that stresses resulting from slip on a curved fault can promote or inhibit inelastic failure within the fault zone in a pattern matching the observations. The occurrence of shallow, localized interseismic fault creep within mature fault zones may thus be partly controlled by the local fault geometry and normal stress, with implications for models of fault zone evolution, shallow coseismic slip deficit, and geologic estimates of long-term slip rates.
机译:我们使用多个干涉式合成孔径雷达观测几何形状和穿过断层的密集阵列的测量模式GPS占领的组合,调查了圣安德烈亚斯断层南部的地表蠕变和断层变形的空间格局。 Envisat公司在2003年至2010年期间进行的雷达观测用于分离水平运动和垂直运动的模式,从而提供了沿断层迹线的隆升和浅蠕变的高分辨率图像。数据揭示了沿断层最南端50 km的普遍浅层蠕变。蠕变仅在麦加丘陵和Durmid丘陵地区位于明确定义的断层迹线上,而其他地方的蠕变似乎分布在断层周围1–2 km宽的区域中。应变局部化的程度与局部断层走向的变化相关。使用二维边界元模型,我们显示了由弯曲断层上的滑移引起的应力可以促进或抑制断层区内非弹性破坏,其模式与观测值相符。因此,成熟断层带内浅的,局部地震间断层蠕变的发生可能部分由局部断层的几何形状和正应力控制,这对断层带演化模型,浅同震滑移赤字和长期滑移率的地质估计有影响。

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