Coseismic Slip Model of the 19 September 2022 Mw 7.6 Michoacán, Mexico, Earthquake: A Quasi-Repeat of the 1973 Mw 7.6 Rupture

Chengli Liu, T. Lay, Yefei Bai, P. He, X. Xiong
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引用次数: 2

Abstract

On 19 September 2022, a major earthquake struck the northwestern Michoacán segment along the Mexican subduction zone. A slip model is obtained that satisfactorily explains geodetic, teleseismic, and tsunami observations of the 2022 event. The preferred model has a compact large-slip patch that extends up-dip and northwestward from the hypocenter and directly overlaps a 1973 Mw 7.6 rupture. Slip is concentrated offshore and below the coast at depths from 10 to 30 km with a peak value of ∼2.9 m, and there is no detected coseismic slip near the trench. The total seismic moment is 3.1×1020  N·m (Mw 7.6), 72% of which is concentrated in the first 30 s. Most aftershocks are distributed in an up-dip area of the mainshock that has small coseismic slip, suggesting near-complete strain release in the large-slip patch. Teleseismic P waveforms of the 2022 and 1973 earthquakes are similar in duration and complexity with high cross-correlation coefficients of 0.68–0.98 for long P to PP signal time windows, indicating that the 2022 earthquake is a quasi-repeat of the 1973 earthquake, possibly indicating persistent frictional properties. Both the events produced more complex P waveforms than comparable size events along Guerrero and Oaxaca, reflecting differences in patchy locking of the Mexican megathrust.
墨西哥2022年9月19日Mw 7.6地震的同震滑动模型:1973年Mw 7.6地震的准重复
2022年9月19日,沿墨西哥俯冲带的西北部Michoacán段发生了一次大地震。获得了一个滑动模型,可以令人满意地解释2022年事件的大地测量、远震和海啸观测。首选的模型有一个紧凑的大滑动块,从震源向上倾斜和向西北延伸,直接与1973年7.6 Mw的破裂重叠。滑移集中在近海和海岸以下深度10 ~ 30 km处,峰值为~ 2.9 m,在海沟附近未检测到同震滑移。地震总力矩为3.1×1020 N·m (Mw 7.6),其中72%集中在地震前30 s。大多数余震分布在同震滑动较小的主震上倾区,表明在大滑动区应变释放接近完全。2022年地震和1973年地震的远震P波波形在持续时间和复杂程度上相似,P - PP信号长时间窗的互相关系数为0.68 ~ 0.98,表明2022年地震是1973年地震的准重复,可能具有持续摩擦特性。与格雷罗和瓦哈卡地区类似规模的地震相比,这两次地震都产生了更复杂的P波波形,反映了墨西哥巨型逆冲构造的局部锁定的差异。
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