Tectonic evolution of the eastern margin of the Northern South Yellow Sea Basin in the Yellow Sea since the Late Cretaceous

IF 2.7 3区 地球科学 Q2 GEOSCIENCES, MULTIDISCIPLINARY Journal of Asian Earth Sciences Pub Date : 2024-08-14 DOI:10.1016/j.jseaes.2024.106287
Seonghoon Moon , Han-Joon Kim , Sookwan Kim , Jongha Hwang , Chung-ho Kim , Su-hwan Lee , Sang-Hoon Lee , Gwang Hoon Lee
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Abstract

The South Yellow Sea Basin is the largest sedimentary basin in the Yellow Sea. The Gunsan Basin in the central eastern part of the Northern South Yellow Sea Basin comprises the Western, Central, and Eastern Subbasins. The Eastern Subbasin marks the eastern margin of the South Yellow Sea Basin. Interpretation of multi-channel seismic profiles and balanced cross-section restoration of depth-converted seismic profiles reveal the structural characteristics and evolution of the Eastern Subbasin. The subbasin comprises three groups of faults: NW-SE, NE-SW, and NNE-SSW trending faults. The subsidence pattern of the subbasin, derived from the cross-section restoration analysis, indicates five distinguished evolution phases: (i) rapid subsidence in the Late Cretaceous, (ii) slow subsidence from the Paleocene to the Eocene, (iii) accelerated subsidence in the Oligocene, (iv) alternation of the uplift and subsidence in the Early Miocene, and (v) gradual subsidence since the Middle Miocene. The main and moderate subsidence can be explained by the combination of extension in the SE and NE-SW directions that formed double duplex structures. We suggest that the NW oblique subduction of the Pacific Plate under the NE Asia margin induced both extension toward the trench and dextral strike-slip parallel to the margin. The extension toward the trench caused SE transtension in a local pull-apart setting, whereas the dextral strike-slip parallel to the margin caused NE-SW extension, inducing more significant subsidence. The combined processes resulted in the progressive development of nested duplex structures. The evolution of the Eastern Subbasin is not compatible with previously suggested models for the western part of the South Yellow Sea Basin including foreland basin formation and transtension induced by branch faults of the Tan-Lu Fault.

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晚白垩世以来黄海南黄海北部盆地东缘的构造演化
南黄海盆地是黄海最大的沉积盆地。位于南黄海北部盆地中东部的群山盆地由西部、中部和东部子盆地组成。东亚盆地是南黄海盆地的东缘。多道地震剖面解释和深度转换地震剖面的平衡断面复原揭示了东亚盆地的构造特征和演化过程。该次盆地由三组断层组成:西北-东南走向断层、东北-西南走向断层和东北-西南走向断层。根据横断面复原分析,该次盆地的沉降模式显示出五个不同的演变阶段:(i) 晚白垩世的快速沉降,(ii) 从古新世到始新世的缓慢沉降,(iii) 渐新世的加速沉降,(iv) 早中新世的隆起和沉降交替,以及 (v) 中新世以来的逐渐沉降。主要的适度下沉可解释为东南和东北-西南方向的延伸共同形成了双复式结构。我们认为,太平洋板块在东北亚边缘的西北斜向俯冲同时引起了向海沟的延伸和与边缘平行的右旋走向滑动。向海沟的延伸在局部拉开的环境中引起了东南向的横张,而平行于边缘的右旋走向滑动则引起了东北-西南向的延伸,导致了更显著的沉降。这两个过程的共同作用导致了嵌套复式结构的逐渐发展。东亚盆地的演化与之前提出的南黄海盆地西部模型(包括前陆盆地的形成和郯庐断层分支引起的张斜)并不一致。
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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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