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首页> 外文期刊>Journal of structural geology >3D geometry and architecture of a normal fault zone in poorly lithified sediments: A trench study on a strand of the Baza Fault, central Betic Cordillera, south Spain
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3D geometry and architecture of a normal fault zone in poorly lithified sediments: A trench study on a strand of the Baza Fault, central Betic Cordillera, south Spain

机译:岩石化程度较差的沉积物中正常断层带的3D几何和结构:西班牙南部Betic Cordillera中Baza断层一段的沟槽研究

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摘要

Successive excavation of 13 trenches of different orientations reveals the complexity of a normal fault zone in Pliocene-Pleistocene unconsolidated sediments on a strand of the Baza Fault, central Betic Cordillera, south Spain. These trenches and the excavation floor are interpreted and integrated to reconstruct the 3D geometry and internal architecture of the fault zone. The structure consists of two main fault strands: an eastern one with a few hundred metres throw and a western one with at least 15 m throw. These strands interact and gradually merge to the south, bounding a main deformation zone narrowing from similar to 7 to 1 m along strike. Fault-bounded rock bodies, clay and sand smears, and clay injections define the structure. These features are highly variable in 3D. In the northern part of the outcrop, deformation is localized around the main strands, brittle in the west and more ductile to the east. As the strands and their fault zones increasingly interact, fault throw, rock deformation and maturity of the structure increase. Mechanical stratigraphy also controls the style of deformation. A realistic representation of this 4D picture of fault deformation is critical for modelling fluid flow in shallow to possibly deep, faulted sedimentary reservoirs.
机译:连续挖掘13个不同方向的沟渠揭示了西班牙南部中部比蒂科迪勒拉(Batic Cordillera)中部巴扎断层一段上新世-更新世未固结沉积物中正常断层带的复杂性。这些沟槽和开挖底板经过解释和整合,以重建断层带的3D几何形状和内部结构。该结构由两条主要断层组成:东段有几百米的投掷,西段有至少15 m的投掷。这些股线相互作用并逐渐向南融合,界定了一个主要的变形带,该变形带沿走向从大约7 m缩小到1 m。断层界定的岩体,黏土和泥土涂片以及黏土注入定义了该结构。这些功能在3D中变化很大。在露头的北部,变形集中在主链周围,在西部较脆,在东部较易延展。随着股线及其断层带的相互作用越来越大,断层投掷,岩石变形和结构成熟度也随之增加。机械地层学也控制变形的样式。断层变形的这种4D图像的真实表示对于模拟浅到深的断层沉积储层中的流体流动至关重要。

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