Relocation of the 2021 MW 7.4 Maduo, Qinghai, China earthquake sequence and implications for seismogenic structure

IF 2.7 3区 地球科学 Q2 GEOSCIENCES, MULTIDISCIPLINARY Journal of Asian Earth Sciences Pub Date : 2024-08-10 DOI:10.1016/j.jseaes.2024.106276
Penghu Guan , Jianshe Lei , Dapeng Zhao
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Abstract

An MW 7.4 earthquake struck Maduo County, Qinghai, China on 22 May 2021. To better understand the seismogenic structure of this region, we collect local earthquake arrival time data at the MAD station in the China Earthquake Networks Center observational bulletins during 1 June to 20 September 2021, and manually pick P and S wave arrival times from high-quality seismograms recorded at 34 recently deployed MaduoArray portable seismic stations. Using these arrival times, we relocate the Maduo earthquake sequence using earthquake association, absolute location and relative location methods. Our results show that the 2021 Maduo earthquake sequence occurred along the Kunlun Mountain Pass-Jiangcuo fault zone in the NWW-SEE direction and the aftershocks are located on both sides of the mainshock, showing characteristics of bilateral rupture. Vertical cross-sections of the aftershock distribution illustrate a nearly vertical shape of the seismogenic fault that tilts toward the northeast and southwest in different sections, reflecting a complex geometry of the fault plane. There is a horsetail bifurcation phenomenon at the eastern end of the fault zone. A sparse area of aftershocks appears at about 30 km east of the mainshock epicenter, which may be associated with a uniform fault friction and sufficient release of rupture energy caused by super-shear rupture of the mainshock. Taking into account many geophysical results including seismic tomography and magnetotelluric soundings, we speculate that the occurrence of the Maduo earthquake could be affected by crustal fluids in the fault zone. The fluids may ascend from the lower crustal flow beneath northeastern Tibet.

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中国青海玛多 2021 兆瓦 7.4 级地震序列的重新定位及其对震源结构的影响
2021 年 5 月 22 日,中国青海玛多县发生 MW 7.4 级地震。为了更好地了解该地区的震源结构,我们收集了中国地震台网中心观测公报中玛多站在 2021 年 6 月 1 日至 9 月 20 日期间的当地地震到达时间数据,并从最近布设的 34 个玛多阵列便携式地震台站记录的高质量地震图中手动提取 P 波和 S 波到达时间。利用这些到达时间,我们采用地震关联法、绝对定位法和相对定位法对玛多地震序列进行了重新定位。结果表明,2021 年玛多地震序列沿昆仑山口-江错断裂带西北-东南方向发生,余震位于主震两侧,呈现双边断裂特征。余震分布的垂直断面图显示,发震断层近乎垂直,在不同断面上向东北和西南倾斜,反映了断层面复杂的几何形态。断层带东端出现马尾分叉现象。在主震震中以东约 30 公里处出现了一个稀疏的余震区,这可能与主震超剪切断裂造成的均匀断层摩擦和充分释放断裂能量有关。结合地震层析成像和磁层探测等多项地球物理结果,我们推测玛多地震的发生可能受到断层带地壳流体的影响。这些流体可能来自西藏东北部地壳下部的流动。
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来源期刊
Journal of Asian Earth Sciences
Journal of Asian Earth Sciences 地学-地球科学综合
CiteScore
5.90
自引率
10.00%
发文量
324
审稿时长
71 days
期刊介绍: Journal of Asian Earth Sciences has an open access mirror journal Journal of Asian Earth Sciences: X, sharing the same aims and scope, editorial team, submission system and rigorous peer review. The Journal of Asian Earth Sciences is an international interdisciplinary journal devoted to all aspects of research related to the solid Earth Sciences of Asia. The Journal publishes high quality, peer-reviewed scientific papers on the regional geology, tectonics, geochemistry and geophysics of Asia. It will be devoted primarily to research papers but short communications relating to new developments of broad interest, reviews and book reviews will also be included. Papers must have international appeal and should present work of more than local significance. The scope includes deep processes of the Asian continent and its adjacent oceans; seismology and earthquakes; orogeny, magmatism, metamorphism and volcanism; growth, deformation and destruction of the Asian crust; crust-mantle interaction; evolution of life (early life, biostratigraphy, biogeography and mass-extinction); fluids, fluxes and reservoirs of mineral and energy resources; surface processes (weathering, erosion, transport and deposition of sediments) and resulting geomorphology; and the response of the Earth to global climate change as viewed within the Asian continent and surrounding oceans.
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