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Strain Accumulation Across the Carrizo Segment of the San Andreas Fault, California: Impact of Laterally Varying Crustal Properties

机译:加利福尼亚州圣安德烈亚斯断层的卡里佐段上的应变累积:地壳性质横向变化的影响

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摘要

Major strike slip faults juxtapose geologically dissimilar terrain which may vary in mechanical properties, leading to an asymmetric pattern of strain accumulation. We present new GPS data on the Carrizo segment of the San Andreas Fault, separating the Salinian block southwest of the fault from Franciscan terrane northeast of the fault, to better quantify asymmetric strain accumulation. We also present a series of finite element models to investigate the possible role of variable elastic layer thickness and material properties of the upper crust. The geodetic data are well fit with a simple model comprising a weak upper crustal zone 10–25 km wide northeast of the fault. This model is also consistent with geologic data on the distribution of major rock types and corresponding laboratory data on their material properties, as well as paleoseismic, seismic and magnetotelluric data. Using this model, we estimate a “long-term” (average over several seismic cycles) slip rate for the San Andreas Fault of 36−1.5+2 mm/yr in agreement with the known Holocene rate within uncertainties, and a viscosity for the combined lower crust/upper mantle of 2–5 × 1019 Pa s.
机译:主要的走滑断层使地质学上不同的地形并列,这些地形的力学性质可能会有所不同,从而导致应变累积的不对称规律。我们在圣安德烈亚斯断层的Carrizo段上提供了新的GPS数据,将断层西南的Salinian块与断层东北的Franciscan地层分开,以更好地量化不对称应变的积累。我们还提出了一系列有限元模型,以研究可变弹性层厚度和上地壳的材料特性的可能作用。大地数据非常适合简单的模型,该模型包括断层东北10-25 km宽的上地壳区。该模型还与有关主要岩石类型分布的地质数据和有关其材料性质的相应实验室数据以及古地震,地震和大地电磁数据相一致。使用该模型,我们估计了36-1.5 + 2 mm / yr的圣安德烈亚斯断层的“长期”(在多个地震周期中的平均值)滑移速率,与已知的全新世速率在不确定性范围内一致,而黏度下地壳/上地幔的组合为2–5×1019 Pa s。

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