Surface and Deep Structure of the Hanshan–Wuwei Basins in the Lower Yangtze Region: Implications for Mesozoic Tectonic Evolution of the South China Block

IF 3.5 3区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY Acta Geologica Sinica ‐ English Edition Pub Date : 2024-10-28 DOI:10.1111/1755-6724.15210
Tianxiang KAN, Longming LI, Hongjun ZHENG, Jiahao LI, Xilin ZHAO, Mo CHEN
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Abstract

Indicating the tectonic features of the Hanshan–Wuwei basin can reconstruct the framework of the basins formed in Mesozoic and further understand the Mesozoic tectonic evolution of the South China Block. Studies on surface structure, regional stress field and deep geophysical characteristics of the Mesozoic Hanshan–Wuwei basin in Lower Yangtze region were carried out. NE–NNE trending folds and faults developed in the northern margin of the basins. The reconstruction of tectonic stress fields indicates four stress stages dominating the basins' evolution including NW–SE compression, N–S compression, NW–SE extension and NWW–SEE compression. 2D seismic profiles reveal coexistence of thrust, strike-slip and normal faults in the basin. Combined with regional geological studies, the geodynamic processes for the formation of the Hanshan–Wuwei basin can be divided into five stages: 1) During the Late Triassic, EW trending foreland basin was formed by N–S compression; 2) From Mid-Jurassic to Late Jurassic, continuous compression strengthened the foreland deformation and formed thrust nappes. In this stage, the integrated foreland basin was compartmentalized or fragmented, and transferred to the broken foreland basin; 3) NE-trending sinistral strike-slip movement at the beginning of the Early Cretaceous; 4) Regional extension resulted in normal faults and rift basins developing in the Late Cretaceous; 5) The NWW–SEE compression at the end of the Late Cretaceous caused NW sinistral strike-slip faults to form, which partly transformed the rift basin.

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长江下游地区汉山-武威盆地的表层和深部结构:华南地块中生代构造演化的意义
揭示汉山-武威盆地的构造特征,可以重建中生代形成的盆地框架,进一步认识华南地块的中生代构造演化。研究了长江下游中生代汉山-武威盆地的地表构造、区域应力场和深部地球物理特征。盆地北缘发育NE-NNE向褶皱和断层。构造应力场重建表明,盆地演化主要经历了四个应力阶段,包括NW-SE压缩、N-S压缩、NW-SE扩展和NWW-SEE压缩。二维地震剖面显示盆地内推断、走向滑动和正断层并存。结合区域地质研究,汉山-武威盆地形成的地球动力学过程可分为五个阶段:1)晚三叠世,EW向前陆盆地在N-S压缩作用下形成;2)侏罗纪中期至晚侏罗世,持续的压缩作用加强了前陆变形,形成了推覆构造。在这一阶段,完整的前陆盆地被分割或破碎,转入破碎前陆盆地;3)早白垩世初期,NE向正弦走向的走向滑动运动;4)晚白垩世,区域延伸导致正断层和裂谷盆地的发育;5)晚白垩世末期,NWW-SEE向的挤压作用导致NW向正弦走向的走向滑动断层形成,部分改造了裂谷盆地。
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来源期刊
Acta Geologica Sinica ‐ English Edition
Acta Geologica Sinica ‐ English Edition 地学-地球科学综合
CiteScore
3.00
自引率
12.10%
发文量
3039
审稿时长
6 months
期刊介绍: Acta Geologica Sinica mainly reports the latest and most important achievements in the theoretical and basic research in geological sciences, together with new technologies, in China. Papers published involve various aspects of research concerning geosciences and related disciplines, such as stratigraphy, palaeontology, origin and history of the Earth, structural geology, tectonics, mineralogy, petrology, geochemistry, geophysics, geology of mineral deposits, hydrogeology, engineering geology, environmental geology, regional geology and new theories and technologies of geological exploration.
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