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半脆性蛇纹岩断裂带中的慢滑事件。

Slow-slip events in semi-brittle serpentinite fault zones.

作者信息

Goswami A, Barbot S

机构信息

1200 E California Blvd, Pasadena, CA, 91125, USA.

50 Nanyang Ave, Block N2-01a-15, Nanyang, 639798, Singapore.

出版信息

Sci Rep. 2018 Apr 18;8(1):6181. doi: 10.1038/s41598-018-24637-z.

Abstract

Slow-slip events are earthquake-like events only with much lower slip rates. While peak coseismic velocities can reach tens of meters per second, slow-slip is on the order of 10 m/s and may last for days to weeks. Under the rate-and-state model of fault friction, slow-slip is produced only when the asperity size is commensurate with the critical nucleation size, a function of frictional properties. However, it is unlikely that all subduction zones embody the same frictional properties. In addition to friction, plastic flow of antigorite-rich serpentinite may significantly influence the dynamics of fault slip near the mantle wedge corner. Here, we show that the range of frictional parameters that generate slow slip is widened in the presence of a serpentinized layer along the subduction plate interface. We observe increased stability and damping of fast ruptures in a semi-brittle fault zone governed by both brittle and viscoelastic constitutive response. The rate of viscous serpentinite flow, governed by dislocation creep, is enhanced by high ambient temperatures. When effective viscosity is taken to be dynamic, long-term slow slip events spontaneously emerge. Integration of rheology, thermal effects, and other microphysical processes with rate-and-state friction may yield further insight into the phenomenology of slow slip.

摘要

慢滑移事件是类似地震的事件,只是滑移速率要低得多。虽然同震峰值速度可达每秒数十米,但慢滑移速度约为10米/秒,可能持续数天至数周。在断层摩擦的速率-状态模型下,只有当粗糙体尺寸与临界成核尺寸(摩擦特性的函数)相匹配时,才会产生慢滑移。然而,所有俯冲带不太可能具有相同的摩擦特性。除了摩擦之外,富含叶蛇纹石的蛇纹岩的塑性流动可能会显著影响地幔楔角附近断层滑移的动力学。在此,我们表明,在俯冲板块界面存在蛇纹石化层的情况下,产生慢滑移的摩擦参数范围会变宽。我们观察到,在由脆性和粘弹性本构响应共同控制的半脆性断层带中,快速破裂的稳定性和阻尼增加。由位错蠕变控制的粘性蛇纹岩流动速率会因高环境温度而增强。当有效粘度被视为动态粘度时,长期慢滑移事件会自发出现。将流变学、热效应和其他微观物理过程与速率-状态摩擦相结合,可能会进一步深入了解慢滑移现象。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e80/5906616/43b289b8cc55/41598_2018_24637_Fig1_HTML.jpg

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