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Dynamic rupture models of earthquakes on the Bartlett Springs Fault, Northern California

机译:北加州巴特利特斯普林斯断层的地震动态破裂模型

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The Bartlett Springs Fault (BSF), the easternmost branch of the northern San Andreas Fault system, creeps along much of its length. Geodetic data for the BSF are sparse, and surface creep rates are generally poorly constrained. The two existing geodetic slip rate inversions resolve at least one locked patch within the creeping zones. We use the 3-D finite element code FaultMod to conduct dynamic rupture models based on both geodetic inversions, in order to determine the ability of rupture to propagate into the creeping regions, as well as to assess possible magnitudes for BSF ruptures. For both sets of models, we find that the distribution of aseismic creep limits the extent of coseismic rupture, due to the contrast in frictional properties between the locked and creeping regions.
机译:巴特利特斯普林斯断层(BSF)是圣安德烈亚斯断层系统北部最东端的分支,沿其大部分长度蠕变。 BSF的大地测量数据稀疏,通常对表面蠕变速率的约束较差。现有的两个大地滑移率反演可解决蠕变区内至少一个锁定的斑块。我们使用3-D有限元代码FaultMod来基于两个大地测量反演进行动态破裂模型,以确定破裂传播到蠕变区域的能力,并评估BSF破裂的可能幅度。对于这两组模型,我们发现,由于锁定区域和蠕变区域之间的摩擦特性存在差异,因此抗震蠕变的分布限制了同震破裂的程度。

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