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首页> 外文期刊>Journal of geodynamics >Discrete-element numerical modeling of sub-salt structures in the Central Kelasu fold-thrust belt, Kuqa Depression, northwestern China
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Discrete-element numerical modeling of sub-salt structures in the Central Kelasu fold-thrust belt, Kuqa Depression, northwestern China

机译:中国西北库车De陷克拉拉苏中部逆冲冲断带亚盐构造的离散元数值模拟

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摘要

Knowledge of the deformation history and dominant factors influencing the formation of sub-salt structures is necessary to understand the formation of sub-salt traps. In this study, the discrete-element method (DEM) is used to assess the deformation mechanism of sub-salt structures in the Central Kelasu fold-thrust belt of the Kuqa Depression. A series of DEM models of the Central Kelasu fold-thrust belt are constructed, the final deformation styles of the models are compared with the real structures in order to determine the fitting degree of each models, and the dominant factors influencing the formation of sub-salt structures are determined. A thin salt layer promotes the deformation in the sub-salt sequence. Salt sub-sags, basal uplifts, and pre-existing faults can also promote the deformation in the sub-salt sequence in the northern part of the models. Large deformations accumulate in pre-existing structures in the northern part of the models, and then subsequent deformations are also transmitted to the salt layer and supra-salt sequence; however, these deformations are hardly transmitted to the sub-salt sequence in the middle and southern parts of the models. Among the eight DEM models constructed in our research, the horizontal-stratum model without any initial structures showed the best fit to actual phenomena. Earlier simple structures of Mesozoic layers can be deformed into the current complex structures under compression effects in the late Himalayan period. By comparing with other regions and analyzing the deformation progress of the DEM model, the sub-salt structures in the Kuqa Depression are considered to be fold-accommodation fault structures.
机译:了解变形历史和影响次盐构造的主要因素是了解次盐陷阱的形成所必需的。在这项研究中,使用离散元方法(DEM)评估库车pr​​ession陷中克拉苏(Kelasu)褶皱冲断带中次盐构造的变形机制。构造了一系列中央克拉斯苏褶皱冲断带的DEM模型,将模型的最终变形样式与实际结构进行比较,以确定每个模型的拟合程度,以及影响亚构造的主要因素。确定盐的结构。薄盐层会促进次盐序列的变形。盐分下陷,基底隆升和先前存在的断层也可以促进模型北部盐分序列的变形。大的变形积累在模型北部的既有结构中,然后随后的变形也传递到盐层和超盐序列。但是,这些变形很难传递到模型中南部的盐下层序。在我们的研究中构建的八个DEM模型中,没有任何初始结构的水平地层模型最适合实际现象。在喜马拉雅晚期,受压缩作用,中生代早期的简单结构可以变形为当前的复杂结构。通过与其他地区的比较和分析DEM模型的变形过程,库车De陷的亚盐构造被认为是褶皱适应断层构造。

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  • 来源
    《Journal of geodynamics》 |2020年第2期|101687.1-101687.11|共11页
  • 作者

  • 作者单位

    Peking Univ Sch Earth & Space Sci Key Lab Orogen Belts & Crustal Evolut Beijing 100871 Peoples R China|SINOPEC Petr Explorat & Prod Res Inst Beijing 100083 Peoples R China;

    Tarim Oilfield Inst Explorat & Dev Korla Peoples R China;

    Peking Univ Sch Earth & Space Sci Key Lab Orogen Belts & Crustal Evolut Beijing 100871 Peoples R China;

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

    Kuqa depression; Fold-thrust belt; Himalaya period; Fold-accommodation fault structures; Discrete-element method;

    机译:库车洼地;折叠推力带喜马拉雅时期;折叠容错构造离散元法;

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