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Analysis of fault bend folding kinematic models and comparison with an analog experiment

机译:故障弯曲折叠运动模型分析与模拟实验的比较

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摘要

Analog modeling of a flat-ramp-flat fault system was performed and its geometry and displacement field were compared to those of different kinematic models such as classical fault bend folding, fault parallel flow, inclineshear, curvilinear hinge, and backlimb trishear. To obtain the displacement vectors of the analog experiment, a Particle Image Velocimetry was performed. All analyzed kinematic models could explain the general configuration of the fault bend folding. However, only backlimb trishear could represent the geometry, directions of particle displacements, and relations between the displacements? vectors. We propose in this paper that the combination of different asymmetry angles and different apical angles of the backlimb trishear model for each bend in a fault bend fold could be a very versatile and general kinematic model for simulating fault bend folds. Backlimb trishear apical angle can be used to control the shape of the hinges of a fold, while the asymmetry can be used to convolve the velocity of the particles above the fault. Both apical angle and asymmetries different from zero imply thickness changes. Fault bend folds with high inclination forelimbs can be reproduced with high positive asymmetries in the anticline bends of the fault.
机译:进行了平坦斜面故障系统的模拟建模,并将其几何和位移场比较了不同运动型型号,如经典故障弯曲折叠,故障平行流动,斜曲线,曲线铰链和反射型训练。为了获得模拟实验的位移载体,进行颗粒图像速度。所有分析的运动模型都可以解释故障弯曲折叠的一般配置。但是,只有Backlimb Trishear可以代表粒子位移的几何形状,方向,以及位移之间的关系? vectors。我们提出了在故障弯曲折叠中每个弯曲的不同不对称角度和反射型训练模型的不同不对称角度和不同顶角的组合可以是用于模拟故障弯曲折叠的非常通用和一般的运动模型。 Backlimb Trishear顶角可用于控制折叠铰链的形状,而不对称可用于卷曲故障上方粒子的速度。顶角和不对称不同于零意味着厚度的变化。具有高倾斜前肢的故障弯曲折叠,可以在故障的抗线弯曲中具有高阳性不对称。

著录项

  • 来源
    《Journal of structural geology》 |2021年第5期|104316.1-104316.11|共11页
  • 作者单位

    Univ Buenos Aires Fac Ciencias Exactas & Nat Inst Estudios Andinos Don Pablo Groeber IDEAN Dept Ciencias Geol CONICET Lab Modelado Geol LaMo Intendente Guiraldes 2160 C1428EHA Buenos Aires DF Argentina;

    Univ Buenos Aires Fac Ciencias Exactas & Nat Inst Estudios Andinos Don Pablo Groeber IDEAN Dept Ciencias Geol CONICET Lab Modelado Geol LaMo Intendente Guiraldes 2160 C1428EHA Buenos Aires DF Argentina;

    Univ Buenos Aires Fac Ciencias Exactas & Nat Inst Estudios Andinos Don Pablo Groeber IDEAN Dept Ciencias Geol CONICET Lab Modelado Geol LaMo Intendente Guiraldes 2160 C1428EHA Buenos Aires DF Argentina|CONICET LaTe Andes SA Las Moreras 51 A4401XBA Salta Argentina;

    Univ Buenos Aires Fac Ciencias Exactas & Nat Inst Estudios Andinos Don Pablo Groeber IDEAN Dept Ciencias Geol CONICET Lab Modelado Geol LaMo Intendente Guiraldes 2160 C1428EHA Buenos Aires DF Argentina;

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

    Kinematic models; Fault-bend folding; Analog model; Particle image velocimetry; Velocity fields;

    机译:运动模型;故障弯曲;模拟模型;粒子图像速度;速度场;

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