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Crustal-Scale Fault Interaction at Rifted Margins and the Formation of Domain-Bounding Breakaway Complexes: Insights From Offshore Norway

机译:地壳尺度的断层相互作用与裂谷边缘和边界界定的分离复合体的形成:来自挪威近海的见解

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摘要

The large-magnitude faults that control crustal thinning and excision at rifted margins combine into laterally persistent structural boundaries that separate margin domains of contrasting morphology and structure. We term them breakaway complexes. At the Mid-Norwegian margin, we identify five principal breakaway complexes that separate the proximal, necking, distal, and outer margin domains. Downdip and lateral interactions between the faults that constitute breakaway complexes became fundamental to the evolution of the 3-D margin architecture. Different types of fault interaction are observed along and between these faults, but simple models for fault growth will not fully describe their evolution. These structures operate on the crustal scale, cut large thicknesses of heterogeneously layered lithosphere, and facilitate fundamental margin processes such as deformation coupling and exhumation. Variations in large-magnitude fault geometry, erosional footwall incision, and subsequent differential subsidence along the main breakaway complexes likely record the variable efficiency of these processes.
机译:控制裂口边缘地壳变薄和切除的大断层合并成横向持久的结构边界,这些边界将形态和结构对比的边界域分开。我们称它们为分离复合体。在挪威中部边缘,我们确定了五个主要的分离复合体,它们将近端,颈缩,远端和外边缘域分开。构成分离复合体的断层之间的下倾和横向相互作用成为3-D边缘构造演化的基础。沿着这些断层及其之间观察到不同类型的断层相互作用,但是断层增长的简单模型将无法完全描述它们的演化。这些结构在地壳尺度上运行,可切割厚度较大的非均质层状岩石圈,并有助于诸如变形耦合和掘出等基本边缘过程。大幅度断层的几何形状,侵蚀性下盘切口以及随后沿主要脱开构造的差异沉降的变化可能记录了这些过程的可变效率。

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