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Decoupled extensional faulting and forced folding in the southern part of the Roer Valley Graben, Belgium

机译:比利时鲁尔河谷Graben南部的解耦性伸展断层和强迫褶皱

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摘要

During late Oligocene incipient rifting, the southern part of the Roer Valley Graben was characterized by normal faulting and forced folding of its Paleogene pre-rift strata. The 2D seismic data used in this study shows that these faults and forced folds were geometrically decoupled from faults or fault zones in the underlying Triassic and older strata. Geometric decoupling consistently took place in an interval that comprises (latest Triassic to Early Jurassic) soft claystones on top of (Triassic) alternations of evaporites and claystones layers. This mechanically weak interval probably inhibited the upward propagation of (re) activated underlying faults, resulting in the formation of the observed forced folds (monoclines) in the overlying Paleogene pre-rift strata. Strain from the sub-detachment faults was distributed along the mechanically weak interval towards detachment edges, leading to the consistent presence of faults in the footwall domain of the supra-detachment monoclines. The mechanically weak interval was thereby able to maintain the kinematic coherency between geometrically decoupled under- and overlying deformation throughout late Oligocene rifting. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在晚渐新世初期裂谷期间,Roer谷Graben的南部具有正常断裂和古近纪裂谷前地层的强迫折叠特征。本研究中使用的二维地震数据表明,这些断层和强迫褶皱与下伏的三叠纪和较旧地层中的断层或断层在几何上解耦。几何学上的脱钩持续发生在一个间隔内,该间隔包括在蒸发岩和粘土岩层的(三叠纪)交替之上(从三叠纪到侏罗纪)软粘土。这种机械上较弱的间隔可能会抑制(再)激活的下伏断层的向上传播,从而导致在上古古生代裂谷前地层中形成观察到的强迫褶皱(单峰)。子分离断层的应变沿机械弱间隔向分离边缘分布,导致超分离单斜线下盘壁区断层的一致存在。因此,机械上较弱的间隔能够在整个渐新世裂谷后期维持几何解耦的上下变形和上覆变形之间的运动学连贯性。 (C)2015 Elsevier Ltd.保留所有权利。

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