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以岩性和几何非均质性为特征的慢滑源。

Slow slip source characterized by lithological and geometric heterogeneity.

作者信息

Barnes Philip M, Wallace Laura M, Saffer Demian M, Bell Rebecca E, Underwood Michael B, Fagereng Ake, Meneghini Francesca, Savage Heather M, Rabinowitz Hannah S, Morgan Julia K, Kitajima Hiroko, Kutterolf Steffen, Hashimoto Yoshitaka, Engelmann de Oliveira Christie H, Noda Atsushi, Crundwell Martin P, Shepherd Claire L, Woodhouse Adam D, Harris Robert N, Wang Maomao, Henrys Stuart, Barker Daniel H N, Petronotis Katerina E, Bourlange Sylvain M, Clennell Michael B, Cook Ann E, Dugan Brandon E, Elger Judith, Fulton Patrick M, Gamboa Davide, Greve Annika, Han Shuoshuo, Hüpers Andre, Ikari Matt J, Ito Yoshihiro, Kim Gil Young, Koge Hiroaki, Lee Hikweon, Li Xuesen, Luo Min, Malie Pierre R, Moore Gregory F, Mountjoy Joshu J, McNamara David D, Paganoni Matteo, Screaton Elizabeth J, Shankar Uma, Shreedharan Srisharan, Solomon Evan A, Wang Xiujuan, Wu Hung-Yu, Pecher Ingo A, LeVay Leah J

机构信息

National Institute of Water and Atmospheric Research (NIWA), Wellington 6021, New Zealand.

GNS Science, Lower Hutt 5011, New Zealand.

出版信息

Sci Adv. 2020 Mar 25;6(13):eaay3314. doi: 10.1126/sciadv.aay3314. eCollection 2020 Mar.

Abstract

Slow slip events (SSEs) accommodate a significant proportion of tectonic plate motion at subduction zones, yet little is known about the faults that actually host them. The shallow depth (<2 km) of well-documented SSEs at the Hikurangi subduction zone offshore New Zealand offers a unique opportunity to link geophysical imaging of the subduction zone with direct access to incoming material that represents the megathrust fault rocks hosting slow slip. Two recent International Ocean Discovery Program Expeditions sampled this incoming material before it is entrained immediately down-dip along the shallow plate interface. Drilling results, tied to regional seismic reflection images, reveal heterogeneous lithologies with highly variable physical properties entering the SSE source region. These observations suggest that SSEs and associated slow earthquake phenomena are promoted by lithological, mechanical, and frictional heterogeneity within the fault zone, enhanced by geometric complexity associated with subduction of rough crust.

摘要

慢滑事件(SSEs)在俯冲带的构造板块运动中占了相当大的比例,但对于实际发生慢滑事件的断层却知之甚少。新西兰近海希库朗伊俯冲带记录良好的慢滑事件发生在浅部深度(<2公里),这提供了一个独特的机会,将俯冲带的地球物理成像与直接获取代表发生慢滑的巨型逆冲断层岩石的输入物质联系起来。最近的两次国际大洋发现计划考察在这些输入物质沿着浅部板块界面立即向下倾方向被夹带之前对其进行了采样。与区域地震反射图像相关的钻探结果显示,进入慢滑事件源区的岩性具有非均质性,物理性质变化很大。这些观察结果表明,慢滑事件及相关的慢地震现象是由断层带内的岩性、力学和摩擦非均质性促成的,而与粗糙地壳俯冲相关的几何复杂性则增强了这些非均质性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad24/7096157/6e12cc4c72b1/aay3314-F1.jpg

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