大规模运输复合体复活引起的长期斜坡不稳定:挪威大陆边缘被低估的地质灾害

IF 3.9 1区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY Geological Society of America Bulletin Pub Date : 2023-08-24 DOI:10.1130/b36816.1
Song Jing, T. Alves, K. Omosanya, Wei Li
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引用次数: 0

摘要

海底滑坡是一种严重的地质灾害,能够将大陆边缘的大量沉积物转移到沉积体搬运复合体(MTCs)并产生近海海啸。然而,MTCs在初始失效后的再激活一直被忽视。通过分析高质量的三维地震反射数据和地震属性图,并比较不同MTCs的几何形状,我们研究了挪威边缘Storegga滑动西北侧边坡长期不稳定的发展及其危险后果。我们的研究结果表明,mtc的再激活会使其内部结构和上覆地层变形,促进海底弯曲通道的形成和局部边坡破坏。这些发现进一步表明,欠固结或包含滑块的mtc在初始破坏后可能在很长一段时间内保持不稳定,特别是在受到边坡下切和相应的侧向支撑减少的影响时。本研究表明,mtc易发层序更可能包括长期不稳定和海洋地质灾害反复发生的大陆斜坡区域。
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Long-term slope instability induced by the reactivation of mass transport complexes: An underestimated geohazard on the Norwegian continental margin
Submarine landslides are significant geohazards, capable of displacing large volumes of sediment from continental margins to deposit mass transport complexes (MTCs) and generate offshore tsunamis. However, the reactivation of MTCs after their initial failure has long been overlooked. By analyzing high-quality three-dimensional seismic reflection data and seismic attribute maps, as well as comparing the geometry of different MTCs, we investigate the development of long-term slope instability and its hazardous consequences on the northwest flank of the Storegga Slide on the Norwegian margin. Our results demonstrate that the reactivation of MTCs can deform both their inner structure and overlying strata, promoting the formation of sinuous channels and local slope failures on the seafloor. These findings further reveal the MTCs that are underconsolidated or comprise slide blocks may remain unstable for a long time after their initial failure, particularly when affected by slope undercutting and a corresponding reduction in lateral support. This study shows that MTC-prone sequences are more likely to comprise regions of continental slopes with long-term instability and recurring marine geohazards.
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来源期刊
Geological Society of America Bulletin
Geological Society of America Bulletin 地学-地球科学综合
CiteScore
9.30
自引率
8.20%
发文量
159
审稿时长
4-8 weeks
期刊介绍: The GSA Bulletin is the Society''s premier scholarly journal, published continuously since 1890. Its first editor was William John (WJ) McGee, who was responsible for establishing much of its original style and format. Fully refereed, each bimonthly issue includes 16-20 papers focusing on the most definitive, timely, and classic-style research in all earth-science disciplines. The Bulletin welcomes most contributions that are data-rich, mature studies of broad interest (i.e., of interest to more than one sub-discipline of earth science) and of lasting, archival quality. These include (but are not limited to) studies related to tectonics, structural geology, geochemistry, geophysics, hydrogeology, marine geology, paleoclimatology, planetary geology, quaternary geology/geomorphology, sedimentary geology, stratigraphy, and volcanology. The journal is committed to further developing both the scope of its content and its international profile so that it publishes the most current earth science research that will be of wide interest to geoscientists.
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