Deep Postseismic Creep Following Large Earthquakes Revealed by Repeating Aftershocks in the Southeastern Tibetan Plateau

IF 2.6 3区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS
Shujun Liu, Chi-Chia Tang
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引用次数: 0

Abstract

Abstract Large earthquake occurrence and the subsequent postseismic period are the most dramatic part of a seismic cycle that usually lasts months to years. However, the fault dynamics that account for the postseismic events are yet to be fully understood. Here, we use the repeating aftershock sequences (RASs) to investigate postseismic slips following the Mw 6.6 Lushan, Mw 6.5 Jiuzhaigou, Mw 6.1 Jinggu, and Mw 6.2 Ludian earthquakes in the southeastern Tibetan Plateau and find 135 RASs following the mainshocks. The RAS seismicity suggests that seismogenic faults began to creep in depth within a few hours after the Lushan, Jiuzhaigou, and Jinggu mainshocks. The deep creeps mainly follow a velocity-strengthening friction mode and decay with an Omori law p-value of ∼1. The results suggest that the combination of fault healing and geometry together controls deep fault behaviors. We develop two conceptual models to explain our observations. Our results provide new insights into spatiotemporal fault evolution after large earthquakes.
青藏高原东南部反复余震揭示的大地震后深层蠕变
大地震的发生和随后的震后时期是地震周期中最引人注目的部分,通常持续数月至数年。然而,解释震后事件的断层动力学尚未得到充分理解。本文利用重复余震序列(RASs)研究了青藏高原东南部芦山、九寨沟、景谷和鲁甸等地6.6、6.5、6.1和6.2级地震的震后滑动,共发现135个重复余震序列。RAS地震活动性表明,在庐山、九寨沟和景谷主震发生后数小时内,发震断层开始向纵深蠕动。深层蠕变主要遵循速度强化摩擦模式,并以Omori定律的p值为~ 1衰减。结果表明,断裂愈合与几何结构的结合共同控制着深部断裂的行为。我们开发了两个概念模型来解释我们的观察结果。我们的研究结果为大地震后断层的时空演化提供了新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Seismological Research Letters
Seismological Research Letters 地学-地球化学与地球物理
CiteScore
6.60
自引率
12.10%
发文量
239
审稿时长
3 months
期刊介绍: Information not localized
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