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Three-dimensional finite-element modeling of a thin-skinned fold-thrust belt wedge: Provo salient, Sevier belt, Utah

机译:薄皮褶皱冲断带楔的三维有限元建模:Provo凸面,Sevier带,犹他州

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摘要

Three-dimensional finite-element (FE) analysis of a fold-thrust belt wedge model provides graphical and quantitative information for the strain geometry, kinematics, and mechanics of salient formation in three-dimensional space. A nonlinear, elastic-plastic FE model, using the initial basin configuration of the restored Provo salient, Utah, develops realistic deformation features (e.g., salient) in the deformed sedimentary prism. The three-dimensional fold-thrust belt wedge model shows different deformation characteristics (based on S1, max, and 1 orientations and material-displacement directions) in different parts of the salient, and its behavior is closely related to the preexisting template of the predeformational basin shape. The model results indicate plane-strain deformation with symmetric finite-strain geometry in the middle of the salient and nonplane-strain deformation with nonsymmetric finite-strain geometry at the lateral boundaries. Thus, conventional two-dimensional plane-strain assumptions in fold-thrust belt analysis (e.g., in balancing cross sections) are reasonable only in the middle of the salient; however, at the lateral boundaries, the results indicate fully three dimensional deformation and suggest that restorations need to be more carefully constrained in three dimensions on the basis of detailed geologic data.
机译:褶皱推力楔形模型的三维有限元(FE)分析提供了显着应变的几何,运动学和力学信息的图形和定量信息 > 在三维空间中的形式。非线性弹塑性 FE模型,使用犹他州Provo salient恢复的初始盆地构造,开发了逼真的变形特征 (例如,凸)在变形的沉积棱镜中。三维 褶皱冲断带楔形模型显示出不同的变形特征 (基于S 1 max ,和 1 方向以及材料位移 方向)在凸部的不同部分,其行为 与变形前的预先存在的模板密切相关 流域形状。模型结果表明,凸显 中部具有对称有限应变几何形状的平面应变变形 和非对称有限应变 横向边界处的几何。因此,褶皱-冲断带分析中的常规二维 平面应变假设(例如,平衡截面中的 )仅在中间 显着的但是,在横向边界处,结果 表示完全三维变形,并建议 还原需要更仔细地限制在三维上的三个 维度上。详细地质数据的基础。

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  • 来源
    《Geology》 |2004年第7期|00000561-00000564|共4页
  • 作者

    Sanghoon Kwon; Gautam Mitra;

  • 作者单位

    Department of Earth and Environmental Sciences, University of Rochester, Rochester, New York 14627, USA;

    Department of Earth and Environmental Sciences, University of Rochester, Rochester, New York 14627, USA;

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  • 正文语种 eng
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