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通过与卡斯卡迪亚地震破裂分段相关的深地震成像得到的俯冲板块结构和巨逆冲断层形态。

Subducting plate structure and megathrust morphology from deep seismic imaging linked to earthquake rupture segmentation at Cascadia.

作者信息

Carbotte Suzanne M, Boston Brian, Han Shuoshuo, Shuck Brandon, Beeson Jeffrey, Canales J Pablo, Tobin Harold, Miller Nathan, Nedimovic Mladen, Tréhu Anne, Lee Michelle, Lucas Madeleine C, Jian Hanchao, Jiang Danqi, Moser Liam, Anderson Chris, Judd Darren, Fernandez Jaime, Campbell Chuck, Goswami Antara, Gahlawat Rajendra

机构信息

Lamont-Doherty Earth Observatory of Columbia University, Palisades, NY 10964, USA.

Auburn University, Auburn, AL 36849, USA.

出版信息

Sci Adv. 2024 Jun 7;10(23):eadl3198. doi: 10.1126/sciadv.adl3198.

Abstract

The origin of rupture segmentation along subduction zone megathrusts and linkages to the structural evolution of the subduction zone are poorly understood. Here, regional-scale seismic imaging of the Cascadia margin is used to characterize the megathrust spanning ~900 km from Vancouver Island to the California border, across the seismogenic zone to a few tens of kilometers from the coast. Discrete domains in lower plate geometry and sediment underthrusting are identified, not evident in prior regional plate models, which align with changes in lithology and structure of the upper plate and interpreted paleo-rupture patches. Strike-slip faults in the lower plate associated with oblique subduction mark boundaries between regions of distinct lower plate geometry. Their formation may be linked to changes in upper plate structure across long-lived upper plate faults. The Juan de Fuca plate is fragmenting within the seismogenic zone at Cascadia as the young plate bends beneath the heterogeneous upper plate resulting in structural domains that coincide with paleo-rupture segmentation.

摘要

俯冲带逆冲大断层上破裂分段的起源以及与俯冲带构造演化的联系仍知之甚少。在此,利用卡斯卡迪亚边缘的区域尺度地震成像来描绘从温哥华岛到加利福尼亚边界、跨越地震活动带直至距海岸几十公里处的约900公里长的逆冲大断层。识别出了下盘几何形状和沉积物逆冲的离散区域,这在之前的区域板块模型中并不明显,这些区域与上盘的岩性和构造变化以及解释的古破裂斑块相一致。下盘中与斜向俯冲相关的走滑断层标志着不同下盘几何形状区域之间的边界。它们的形成可能与长期存在的上盘断层上盘结构的变化有关。随着年轻的胡安·德富卡板块在非均质上盘之下弯曲,该板块在卡斯卡迪亚的地震活动带内发生破裂,从而形成了与古破裂分段相一致的构造区域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e930/11160458/e60bcdf2ddac/sciadv.adl3198-f1.jpg

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