首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Basement control on oblique thrust sheet evolution: seismic imaging of the active deformation front of the Central Andes in Bolivia
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Basement control on oblique thrust sheet evolution: seismic imaging of the active deformation front of the Central Andes in Bolivia

机译:斜冲断层演化的地下室控制:玻利维亚中部安第斯山脉活动变形锋的地震成像

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In the area of the Bolivian Orocline, we examine the deformation pattern associated with the active development of a new thrust sheet. A dense grid of reprocessed 2-D seismic lines from hydrocarbon exploration industry is interpreted and a 3-D simplified structural and kinematic model is deduced. In the Boomerang Hills, onlapping Paleozoic and foredeep, sediments are detached from the underlying S-dipping basement. They are thrust north-eastwards by less than 2 km. Two zones can be differentiated along the Andean deformation front: (1) a W-E to NW-SE striking frontal segment of predominantly orthogonal shortening, comprising a thrust and anticline system; (2) a WSW-ENE striking lateral zone of oblique shortening within a complex system of thin-skinned strike-slip faults and minor folds. The deformation front always follows a pronounced edge in the topography of the top basement surface close to the boundary of the Paleozoic basin. The observed deformation pattern indicates intensified strain partitioning caused by the interaction of contraction direction and basement topography, which provides a near oblique ramp for the onlapping wedge of sediments. The SW-NE thrusting direction is divided into orthogonal and tangential components. These are accommodated by convergent and strike-slip structures, respectively, which sole into a common detachment horizon. The structural evolution of the new thrust sheet in the Bolivian Orocline is primarily controlled by the paleorelief of the Brazilian Shield because: (1) the shape of the basement affects the taper of the thrust wedge and localizes the deformation front and (2) small asperities in/close to the top of the basement promote fault localization, The coincidence of a relatively high basement position and a structural high of the Eastern Cordillera leads to the conclusion that the shape of the Brazilian Shield also controls the structural evolution of the pronounced eastern border of the Bolivian Orocline. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 46]
机译:在玻利维亚的Orocline区域,我们研究了与新推力板的积极发展相关的变形模式。解释了碳氢化合物勘探行业中经过重加工的二维地震线的致密网格,并推导了三维简化的结构和运动学模型。在回旋古生代和前深层的回旋镖山中,沉积物从下面的S浸入基底中分离出来。它们向东北方向推拉不到2公里。沿安第斯变形锋可分为两个区域:(1)W-E至NW-SE撞击的主要正交缩短的锋线段,包括冲断和背斜系统; (2)WSW-ENE斜向缩短的侧向带在薄皮走滑断层和小褶皱的复杂系统内。变形前沿总是沿着顶部基底表面的地形中靠近古生代盆地边界的明显边缘。观察到的变形模式表明,由收缩方向和基底形貌的相互作用引起的应变分配增强,这为沉积物的重叠楔形提供了近斜坡。 SW-NE的推力方向分为正交分量和切向分量。它们分别由会聚和走滑结构容纳,它们汇聚在一个共同的分离层中。玻利维亚Orocline中新的逆冲片的结构演化主要受巴西盾构的古陆控制,因为:(1)地下室的形状影响逆冲楔的锥度并局部化变形前缘;(2)小隆起地下室顶部/靠近地下室的位置促进了断层的定位。相对较高的地下室位置和东部山脉的结构高度相吻合,得出的结论是,巴西盾构的形状也控制着明显的东部边界的结构演变。玻利维亚的Orocline。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:46]

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