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Strain migration during multiphase extension: Observations from the northern North Sea

机译:多相延伸过程中的应变迁移:北海北部的观测

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Many rifts develop through multiphase extension; it can be difficult, however, to determine how strain is distributed during reactivation because structural and stratigraphic evidence associated with earlier rifting is often deeply buried. Using 2-D and 3-D seismic reflection and borehole data from the northern North Sea, we examine the style, magnitude, and timing of reactivation of a preexisting, Permian-Triassic (Rift Phase 1) fault array during a subsequent period of Middle Jurassic to Early Cretaceous (Rift Phase 2) extension. We show that Rift Phase 2 led to the formation of new N-S striking faults close to the North Viking Graben but did not initially reactivate preexisting Rift Phase 1 structures on the Horda Platform. We suggest that at the beginning of Rift Phase 2, strain was focused in a zone of thermally weakened lithosphere associated with the Middle Jurassic North Sea thermal dome, rather than reactivating extant faults. Diachronous reactivation of the Permian-Triassic fault network eventually occurred, with those faults located closer to the Middle Jurassic to Early Cretaceous rift axis reactivating earlier than those toward the eastern margin. This diachroneity may have been related to flexural down bending as strain became focused within the North Viking Graben, and/or the shifting of the locus of rifting from the North Sea to the proto-North Atlantic. Our study shows that the geometry and evolution of multiphase rifts is not only controlled by the orientation of the underlying fault network but also by the thermal and rheological evolution of the lithosphere and variations in the regional stress field.
机译:通过多相延伸形成许多裂口。但是,很难确定在重新激活期间应变如何分布,因为与较早裂谷有关的结构和地层证据常常被深埋。利用北海北部的2-D和3-D地震反射和井眼数据,我们研究了随后的中古时期早已存在的二叠系-三叠纪(裂谷1期)断层阵列的样式,震级和重新激活的时间。侏罗纪至白垩纪早期(裂谷2期)延伸。我们表明,裂谷2期导致在北维京人Graben附近形成新的N-S打击断层,但最初并未重新激活Horda平台上的裂谷1结构。我们建议,在裂谷期2开始时,应变集中在与北侏罗纪中部热穹顶相关的热弱岩石圈区域,而不是重新激活现存的断层。最终发生了二叠纪-三叠纪断层网络的历时复活,这些断层更靠近中侏罗统至早白垩世裂谷轴,比早于向东边缘的早复活。当应变在北维京人Graben内集中时,这种双错性可能与弯曲向下弯曲有关,和/或与裂谷的轨迹从北海向原始北大西洋的移动有关。我们的研究表明,多相裂谷的几何形状和演化不仅受下伏断层网络的方向控制,而且受岩石圈的热和流变演化以及区域应力场的变化控制。

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