首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Transition from thin- to thick-skinned tectonics and consequences for nappe formation: Numerical simulations and applications to the Helvetic nappe system, Switzerland
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Transition from thin- to thick-skinned tectonics and consequences for nappe formation: Numerical simulations and applications to the Helvetic nappe system, Switzerland

机译:从薄皮构造到厚皮构造的转变及其对推覆形成的影响:瑞士Helvetic推覆系统的数值模拟和应用

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We use two-dimensional numerical simulations to study the deformation style and the formation of nappes during the shortening of basement-cover systems with half-grabens. We perform simulations with only linear and power-law viscous rheology, and also thermo-mechanical simulations with viscoelastoplastic rheology and temperature-dependent viscosities. The accumulated, area-averaged strain is calculated for the sediments, epsilon(s), and for the basement, epsilon(b), to quantify the deformation style. The results show that the transition from thin-skinned dominated (epsilon(s)/epsilon(b) > 1) to thick-skinned dominated (epsilon(s)/epsilon(b)<= 1) deformation is controlled by two effective viscosity ratios: the ratio of viscosity at the top of the basement to viscosity at the bottom of the basement, and the ratio of viscosity at the top of the basement to viscosity of the sedimentary cover. A higher basement-internal viscosity ratio favors thick-skinned deformation whereas a higher basement-cover viscosity ratio favors thin-skinned deformation. Simulations with only viscous rheology show the same first-order results as the thermo-mechanical simulations. The results further show that fold nappe formation is associated with thick-skinned dominated deformation and thrust nappe formation with thin-skinned dominated deformation. Fold nappes are formed by shearing and extrusion of sediments during the deformation and closure of half-grabens whereas thrust nappes are formed due to the shearing-off of sediments from half-grabens which are nearly undeformed. The results are applied to the Morcles fold nappe and the Helvetic nappe system, Switzerland. (C) 2015 Elsevier B.V. All rights reserved.
机译:我们使用二维数值模拟来研究在用半加强筋缩短地下室覆盖系统的过程中的变形样式和尿布的形成。我们仅使用线性和幂律粘性流变学进行模拟,并使用粘弹塑性流变学和温度依赖性粘度进行热机械模拟。计算出沉积物ε和基底的累积面积平均应变,以量化变形形式。结果表明,由两种有效粘度控制从薄皮占主导(ε/ε(b)> 1)到厚皮占主导(ε/ε(b)<= 1)的转变。比率:地下室顶部的粘度与地下室底部的粘度之比,以及地下室顶部的粘度与沉积物覆盖层的粘度之比。较高的基底-内部粘度比有利于厚皮的变形,而较高的基底-覆盖物粘度比有利于薄皮的变形。仅具有粘性流变学的模拟显示出与热机械模拟相同的一阶结果。结果进一步表明,褶皱推覆形成与厚皮占主导的变形有关,而推力推覆形成与薄皮占主导的变形相关。折叠式尿布是在半岩粉的变形和封闭过程中通过剪切和挤压沉积物而形成的,而推力式尿布是由于沉积物从几乎未变形的半形岩粉中被剪切掉而形成的。该结果将应用于瑞士的Morcles折叠尿布和Helvetic尿布系统。 (C)2015 Elsevier B.V.保留所有权利。

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