北海北部构造观测:裂谷破坏动力学的洞见

Gwenn Peron-Pinvidic, Tor Åkermoen, Lars Leivestad
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摘要

岩石圈伸展导致裂谷形成,并可能持续到破裂点,洋脊开始形成,形成两个共轭裂谷边缘。在某些情况下,延伸可能会停止,裂缝可能会被放弃。这些所谓的“失败裂缝”记录了早期变形阶段的快照,其几何形状可能有助于更好地约束可以阻止裂缝达到破裂的参数,如岩石圈流变学、热状态、裂缝打开的方向和速率、继承。本文总结了挪威大陆架的研究成果,包括北海裂谷、Møre和Vøring裂谷边缘。我们继续解释深穿透地震反射剖面的新数据集,并在区域尺度上进行工作,故意忽略局部特征,专注于大规模的结构图像。目的是列出失败裂谷和成功裂谷边缘在建筑上的异同。我们的制图表明,北海的构造几何形状和基底地震相与相邻的Møre和Vøring裂谷边缘的观测结果非常相似。观察到各种类型的构造构造,从可能演化为核杂构造的厚的吻合剪切带,到复合的大型滑脱断裂和标准的高角度正断层。它们被分为5类,并被解释为裂谷构造演化的例证,通过不同代的变形构造,可以激活、灭活和再激活。在此基础上,讨论了裂谷破坏动力学,并提出北海裂谷的放弃可能与裂谷前的局部条件无关,而是与远端断裂复合体等特定构造的启动能力有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structural Observations of the Northern North Sea: Insights into Rift Failure Dynamics
Lithospheric extension leads to rift formation and may continue to the point of breakup, with oceanic ridge initiation and the formation of two conjugate rifted margins. In some settings, extension can cease, and the rift may be abandoned. These so-called failed rifts archive snapshots of early phases of deformation, with geometries that may help better constrain the parameters that can prevent a rift from reaching breakup, such as lithospheric rheology, thermal state, rift opening direction and rate, inheritance. This contribution summarizes a study of the Norwegian Continental Shelf which includes the North Sea Rift and the Møre and Vøring rifted margins. We proceeded to the interpretation of a new dataset of deep penetrating seismic reflection profiles and worked at the regional scale, deliberately ignoring local particularities, to focus on the large-scale structural picture. The aim is to list architectural similarities and differences between the failed rift and the successful rifted margins. Our mapping shows that the North Sea structural geometries and basement seismic facies are very similar to the observations listed for the adjacent Møre and Vøring rifted margins. Various types of tectonic structures are observed, from thick anastomosing shear zones possibly evolving into core-complex geometries, to composite large-scale detachment faults and standard high-angle normal faults. These are categorized into five classes and interpreted as exemplifying the rift tectonic evolution through distinct generations of deformation structures that can activate, de-activate and re-activate. Based on these observations, rift failure dynamics are discussed, and it is proposed that the North Sea rift abandonment may not be related to pre-rift local conditions but rather to the ability to initiate specific tectonic structures such distal breakaway complexes.
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