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首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >A low-angle normal fault and basement structures within the Enping Sag, Pearl River Mouth Basin: Insights into late Mesozoic to early Cenozoic tectonic evolution of the South China Sea area
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A low-angle normal fault and basement structures within the Enping Sag, Pearl River Mouth Basin: Insights into late Mesozoic to early Cenozoic tectonic evolution of the South China Sea area

机译:Enping Sag中的低角度正常故障和地下室结构,珠江口盆地:深入中生代到早期新生代构造进化的洞察中海域

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摘要

The basement structure of the Cenozoic Enping Sag, within the Pearl River Mouth Basin on the northern margin of South China Sea, is revealed by borehole-constrained high-quality 3D seismic reflection data. Such data suggest that the Enping Sag is bounded in the north by a low-angle normal fault. We interpret this low-angle normal fault to have developed as the result of the reactivation of a pre-existing thrust fault part of a pre-Cenozoic thrust system. This is demonstrated by the selective reactivation of the pre-existing thrust and by diffuse contractional deformation recognized from the accurate analysis of basement reflections. Another significant result of this study is the finding of some residual rift basins within the basement of the Enping Sag. Both the thrust system and the residual basins are interpreted to have developed after the emplacement of continental margin arc-related granitoids (J(3)-K-1) that define the basement within the study area. Furthermore, seismic sections show that the pre-existing residual rift basins are offset by the main thrust fault and they are both truncated by the Tg unconformity. These structural relationships, interpreted in the frame of previous studies, help us to reconstruct a six-event structural evolution model for the Enping Sag from the late Mesozoic to the early Cenozoic. In particular, we interpret the residual rift basins to have formed as the result of back-arc extension due to the slab roll-back of the Paleo-Pacific Plate subduction in the early K-2. The thrust system has recorded a compressional event in the late K-2 that followed the back-arc extension in the SCS area. The mechanism of this compressional event is still to be clarified, and might be related to continuous subduction of the Paleo-Pacific Plate or to the continent-continent collision between a micro-continental block and the South China margin.
机译:新生代Enping凹陷的地下室结构,在珠江口盆地南海北部边缘,由钻孔约束的高质量3D地震反射数据揭示。这些数据表明Enping SAG通过低角度正常故障在北方界定。我们将该低角度正常故障解释为因预先存在的前京东推力系统的重新激活而产生的低角度正常故障。这是通过从基础反射的准确分析认识到的预先存在的推力和弥漫性变形的选择性再现来证明这一点。该研究的另一个重要结果是在展望凹陷的地下室内发现一些残留的裂缝盆地。推力系统和残留盆地都被解释为在施加大陆边缘弧相关的花岗(J(3)-K-1)的施加后开发的,这些花质胶质(J(3)-K-1)定义了研究区域内的地下室。此外,地震切片表明,预先存在的残余裂缝盆地被主推力故障偏移,并且它们都被TG不整合截断。这些结构关系解释在先前研究的框架中,帮助我们重建了从晚期中生代到早期新生代的Enping SAG进行六次事件结构演进模型。特别地,由于早期K-2中的古太平洋板俯冲的板坯回来,我们将残留的裂缝盆地解释为形成为后弧延伸的结果。推力系统在后期K-2中录制了一个压缩事件,然后在SCS区域中的后弧扩展之后。仍然阐明这种压缩事件的机制,并且可能与古太平洋板的连续俯卧进行或者在微型大陆块和华南边缘之间的大陆碰撞相关。

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