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首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Estimating present-day displacement fields and tectonic deformation in active mountain belts: an example from the Chartreuse Massif and the southern Jura Mountains, western Alps
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Estimating present-day displacement fields and tectonic deformation in active mountain belts: an example from the Chartreuse Massif and the southern Jura Mountains, western Alps

机译:估算现役山地带的当今位移场和构造变形:以夏特勒斯断层块和阿尔卑斯山西部的汝拉山脉为例

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摘要

Determination of relative movements between the alpine foreland and the External Crystalline Massif is a key-point for the understanding of the present-day tectonics of the western Alps. In this study we try to test the continuity of the present-day tectonics with the Mio-Pliocene deformation. In particular, we will test if the present-day displacements are localized along the thrusts of the Jura Mountains, or along a blind thrust in the Bas Dauphine Molasse Basin. Definition of relative movements is achieved by several methods, including a comparison of two high precision leveling networks to estimate vertical displacements, horizontal deformation measurements performed by triangulation/triangulation and triangulation/GPS comparison, in situ stress measurements performed in the different tectonic units and geomorphologic observations that constrain the location and the magnitude of the Quaternary deformation. Comparison of leveling data demonstrates: (1) an uplift of the southern Bas Dauphine Molasse Basin relative to its northern part (0.8 mm/year), also revealed by geomorphologic analysis, (2) a significant uplift of the most external jurassian anticlines (0.8 to 2 mm/year), also recorded by the deformation of a paleo-river bed, and (3) an important uplift (up to 2 mm/year) of the Subalpine Massifs. The horizontal strain estimated from comparison of horizontal geodetic data (triangulation, GPS) shows (1) a NW-SE directed shortening between the eastern Chartreuse Massif and the Bas Dauphine Molasses Basin (approximately 3 mm/year), (2) an E-W-directed shortening in the Jura Mountains (approximately 4-3 mm/year) and (3) a dextral strike-slip motion consistent with focal mechanisms along a NNE-SSW direction between the eastern Chartreuse Massif and the eastern Belledonne Massif. These data reveal a present-day strain partitioning between the Belledonne External Crystalline Massif and the Bas Dauphine Molasses Basin. The westward motion of the Subalpine Massifs is partitioned along two southern jurassian thrust-folds, and a dextral NNE-SSW strike-slip shear zone between the Chartreuse Massif and the Belledonne Massif. This strain partitioning is also accompanied by a stress partitioning between the alpine foreland and the External Crystalline Massifs. (C) 1998 Elsevier Science B.V. AU rights reserved. [References: 49]
机译:确定高山前陆和外部晶体地块之间的相对运动是了解当今阿尔卑斯山西部构造的关键。在这项研究中,我们尝试通过Mio-上新世变形来测试当今构造的连续性。特别是,我们将测试当今的位移是否沿着侏罗山的逆冲运动,还是沿着Bas Dauphine Molasse盆地的盲冲运动进行定位。相对运动的定义可以通过几种方法来实现,包括比较两个高精度水准网络以估计垂直位移,通过三角测量/三角测量和三角测量/ GPS比较进行水平变形测量,在不同构造单元和地貌中进行的原地应力测量约束第四纪变形的位置和大小的观测结果。找平数据的比较表明:(1)地貌学分析还揭示了南部Bas Dauphine Molasse盆地相对其北部的隆升(0.8 mm /年),(2)最外部的侏罗纪背斜明显隆起(0.8至2毫米/年),也记录了古河床的变形,以及(3)亚高山断层的重要隆升(高达2毫米/年)。通过比较水平大地测量数据(三角测量,GPS)估算出的水平应变显示出:(1)夏特勒斯山脉东部与Bas Dauphine糖蜜盆地之间的NW-SE定向缩短(约3毫米/年),(2)EW-指导侏罗山地区的缩短(大约4-3毫米/年),以及(3)右旋走滑运动,与沿东部沙特勒斯断层块和贝雷多纳断层块之间的NNE-SSW方向的震源机制一致。这些数据揭示了当今在Belledonne外部晶体地块和Bas Dauphine糖蜜盆地之间的应变分配。亚高山山脉地块的向西运动沿着两个南部侏罗纪逆冲褶皱划分,并在查特里斯山脉和贝勒多纳山脉之间形成了右旋NNE-SSW走滑剪切带。这种应变分配还伴随着高寒前陆和外部晶体地块之间的应力分配。 (C)1998 Elsevier Science B.V. AU版权所有。 [参考:49]

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