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深 San Andreas 断层上的震颤潮汐相关性和近岩石静孔隙压力。

Tremor-tide correlations and near-lithostatic pore pressure on the deep San Andreas fault.

机构信息

Department of Earth and Planetary Science, Berkeley Seismological Laboratory, University of California-Berkeley, 307 McCone Hall, Berkeley, California 94720-4767, USA.

出版信息

Nature. 2009 Dec 24;462(7276):1048-51. doi: 10.1038/nature08654.

Abstract

Since its initial discovery nearly a decade ago, non-volcanic tremor has provided information about a region of the Earth that was previously thought incapable of generating seismic radiation. A thorough explanation of the geologic process responsible for tremor generation has, however, yet to be determined. Owing to their location at the plate interface, temporal correlation with geodetically measured slow-slip events and dominant shear wave energy, tremor observations in southwest Japan have been interpreted as a superposition of many low-frequency earthquakes that represent slip on a fault surface. Fluids may also be fundamental to the failure process in subduction zone environments, as teleseismic and tidal modulation of tremor in Cascadia and Japan and high Poisson ratios in both source regions are indicative of pressurized pore fluids. Here we identify a robust correlation between extremely small, tidally induced shear stress parallel to the San Andreas fault and non-volcanic tremor activity near Parkfield, California. We suggest that this tremor represents shear failure on a critically stressed fault in the presence of near-lithostatic pore pressure. There are a number of similarities between tremor in subduction zone environments, such as Cascadia and Japan, and tremor on the deep San Andreas transform, suggesting that the results presented here may also be applicable in other tectonic settings.

摘要

自近十年前首次发现以来,非火山地震一直为我们提供了有关地球一个此前被认为无法产生地震辐射的区域的信息。然而,目前尚未确定导致地震产生的地质过程的全面解释。由于它们位于板块界面上,与大地测量测量的慢滑事件具有时间相关性,并且剪切波能量占主导地位,因此日本西南部的地震观测被解释为许多低频地震的叠加,这些地震代表了断层表面的滑动。流体在俯冲带环境中的故障过程中也可能是基本的,因为在卡斯卡迪亚和日本的远震和潮汐调制以及两个源区的高泊松比都表明存在受压的孔隙流体。在这里,我们确定了加利福尼亚州帕克菲尔德附近极其微小的、与圣安德烈亚斯断层平行的潮汐诱发剪切应力与非火山地震活动之间存在很强的相关性。我们认为,在接近岩石静压的孔隙压力下,这种地震代表了临界应力断层上的剪切破坏。俯冲带环境中的地震(如卡斯卡迪亚和日本)与深圣安德烈亚斯转换带上的地震有许多相似之处,这表明这里提出的结果也可能适用于其他构造环境。

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