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Weak depth and along-strike variations in stretching from a multi-episodic finite stretching model: Evidence for uniform pure-shear extension in the opening of the South China Sea

机译:多周期有限拉伸模型中的拉伸深度和沿走向变化:南中国海开口处均匀纯剪切扩展的证据

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摘要

The South China Sea is widely believed to have been opened by seafloor spreading during the Cenozoic. The details of its lithospheric extension are still being debated, and it is unknown whether pure, simple, or conjunct shears are responsible for the opening of the South China Sea. The depth-dependent and along-strike extension derived from the single-stage finite stretching model or instantaneous stretching model is inconsistent with the observation that the South China Sea proto-margins have experienced multi-episodic extension since the Late Cretaceous. Based on the multi-episodic finite stretching model, we present the amount of lithosphere stretching at the northern continental margin of the South China Sea for different depth scales (upper crust, whole crust and lithosphere) and along several transects. The stretching factors are estimated by integrating seven deep-penetration seismic profiles, the Moho distribution derived from gravity modeling, and the tectonic subsidence data for 41 wells. The results demonstrate that the amount of stretching increases rapidly from 1.1 at the continent shelf to over 3.5 at the lower slope, but the stretching factors at the crust and lithosphere scales are consistent within error (from the uncertainty in paleobathymetry and sea-level change). Furthermore, the along-strike variation in stretching factor is within the range of 1.11-1.9 in west-east direction, accompanied by significant west-east differences in the thickness of high-velocity layers (HVLs) within the lowermost crust. This weak along-strike variation of the stretching factor is most likely produced by the preexisting contrasts in the composition and thermal structure of the lithosphere. The above observations suggest that the continental extension in the opening of the South China Sea mainly takes the form of a uniform pure shear rather than depth-dependent stretching.
机译:广泛认为,南海是新生代海床扩张所致。其岩石圈扩展的细节仍在争论中,尚不清楚纯剪切,简单剪切或混合剪切是南中国海开放的原因。从单阶段有限拉伸模型或瞬时拉伸模型推导的深度相关和沿走向扩展与自白垩纪晚期以来南海原始边缘经历了多期扩展的观察结果不一致。基于多周期有限拉伸模型,我们给出了南海北部大陆边缘不同深度尺度(上地壳,整个地壳和岩石圈)以及沿几个样带的岩石圈拉伸量。通过整合七个深层地震剖面,重力模型得出的Moho分布以及41口井的构造沉降数据,估算了拉伸因子。结果表明,伸展量从大陆架的1.1迅速增加到下坡的3.5以上,但在地壳和岩石圈尺度的伸展因子在误差范围内是一致的(来自古生物学和海平面变化的不确定性) 。此外,拉伸因子沿走向的变化在东西方向上在1.11-1.9的范围内,伴随着最低地壳内高速层(HVL)厚度的明显的东西向差异。伸展系数的这种较弱的沿走向变化很可能是由岩石圈的成分和热结构中预先存在的对比引起的。上述发现表明,南中国海开口的大陆扩张主要采取均匀的纯剪切形式,而不是依赖于深度的拉伸形式。

著录项

  • 来源
    《Journal of Asian earth sciences》 |2013年第15期|358-370|共13页
  • 作者单位

    State Key Laboratory of Lithospheric Evolution, Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing 100029, China;

    State Key Laboratory of Lithospheric Evolution, Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing 100029, China;

    Key Laboratory of Petroleum Resources Research, Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing 100029, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    South China Sea; Stretching factor; Subsidence; Crustal thinning; Uniform pure shear;

    机译:南中国海;拉伸因子;沉降;地壳变薄;均匀的纯剪切;

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