四川九寨沟7.0级地震带上地壳速度与孕震环境

IF 2.9 3区 地球科学
DaHu Li, ZhiFeng Ding, Yan Zhan, PingPing Wu, LiJun Chang, XiangYu Sun
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引用次数: 2

摘要

2017年8月8日,中国四川省九寨沟县发生7.0级地震。青藏高原东缘的深部发震环境和潜在的地震风险再次引起了国内外地震学家和学者的密切关注。震后科学调查未发现明显的地表破裂带;九寨沟地震带复杂的构造背景和地震活动频繁的原因尚不清楚。为了揭示九寨沟7.0级地震带的深部介质特征和孕震环境,全面解释地震活动的构造背景和成因,本文对九寨沟震区周边北-南地震带北段已有的区域数字地震台网和大型密集移动地震台阵(中国台阵)观测资料进行了梳理。利用双差地震层析成像方法反演九寨沟地震带周围上地壳三维纵波速度结构特征,对九寨沟地震带速度结构特征与地震活动性的关系、深部构造环境、持续地震危险性等科学问题进行了分析和探讨。结果表明:九寨沟地震带周边上地壳纵波速度结构表现出明显的横向不均匀性;浅层纵波速度结构的分布特征与地表地质构造和地层岩性密切相关;九寨沟7.0级地震序列与上地壳速度结构密切相关;7.0级地震主震发生在上地壳;九寨沟震区及其周围介质速度结构的不均匀变化似乎是控制主震及其序列空间分布的深层构造因素。三维纵波速度结构也表明,SGB东北部(songpan - Garzê地块)的地壳低速层向MSM(岷山)伸展,并向东北迁移,但受南坪推覆构造高速带和碧口地块的阻碍,低速层倾向于以浅层形式出现。结果表明,东昆仑断裂带塔藏段高低速构造分布不均匀。九寨沟地震的破裂增强了发震断裂带两端的应力场,因此在东昆仑断裂带马曲 - Maqên段的大地震空区警惕可能发生的地震灾害是非常重要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Upper crustal velocity and seismogenic environment of the M7.0 Jiuzhaigou earthquake region in Sichuan, China

Upper crustal velocity and seismogenic environment of the M7.0 Jiuzhaigou earthquake region in Sichuan, China

On August 8, 2017, a magnitude 7.0 earthquake occurred in Jiuzhaigou County, Sichuan Province, China. The deep seismogenic environment and potential seismic risk in the eastern margin of Tibetan Plateau have once again attracted the close attention of seismologists and scholars at home and abroad. The post-earthquake scientific investigation could not identify noticeable surface rupture zones in the affected area; the complex tectonic background and the reason(s) for the frequent seismicity in the Jiuzhaigou earthquake region are unclear. In order to reveal the characteristics of the deep medium and the seismogenic environment of the M7.0 Jiuzhaigou earthquake region, and to interpret the tectonic background and genesis of the seismicity comprehensively, in this paper, we have reviewed all available observation data recorded by the regional digital seismic networks and large-scale, dense mobile seismic array (China Array) for the northern section of the North–South Seismic Belt around Jiuzhaigou earthquake region. Using double-difference seismic tomography method to invert the three-dimensional P-wave velocity structure characteristics of the upper crust around the Jiuzhaigou earthquake region, we have analyzed and discussed such scientific questions as the relationship between the velocity structure characteristics and seismicity in the Jiuzhaigou earthquake region, its deep tectonic environment, and the ongoing seismic risk in this region. We report that: the P-wave velocity structure of the upper crust around the Jiuzhaigoug earthquake region exhibits obvious lateral inhomogeneity; the distribution characteristics of the shallow P-wave velocity structure are closely related to surface geological structure and formation lithology; the M7.0 Jiuzhaigou earthquake sequence is closely related to the velocity structure of the upper crust; the mainshock of the M7.0 earthquake occurred in the upper crust; the inhomogeneous variation of the velocity structure of the Jiuzhaigou earthquake area and its surrounding medium appears to be the deep structural factor controlling the spatial distribution of the mainshock and its sequence. The 3D P-wave velocity structure also suggests that the crustal low-velocity layer of northeastern SGB (Songpan–Garzê Block) stretches into MSM (Minshan Mountain), and migrates to the northeast, but the tendency to emerge as a shallow layer is impeded by the high-velocity zone of Nanping Nappe tectonics and the Bikou Block. Our results reveal an uneven distribution of high- and low-velocity structures around the Tazang segment of the East Kunlun fault zone. Given that the rupture caused by the Jiuzhaigou earthquake has enhanced the stress fields at both ends of the seismogenic fault, it is very important to stay vigilant to possible seismic hazards in the large seismic gap at the Maqu–Maqên segment of the East Kunlun fault zone.

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来源期刊
Earth and Planetary Physics
Earth and Planetary Physics GEOSCIENCES, MULTIDISCIPLINARY-
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