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首页> 外文期刊>Journal of structural geology >Structure, emplacement mechanism and magma-flow significance of igneous fingers - Implications for sill emplacement in sedimentary basins
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Structure, emplacement mechanism and magma-flow significance of igneous fingers - Implications for sill emplacement in sedimentary basins

机译:火成岩指状构造,沉积机制和岩浆流动意义-对沉积盆地基岩沉积的意义

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Field and seismic observations show that numerous sills exhibit lobate morphologies. Each lobe corresponds to a distinct igneous segment exhibiting a finger-like shape, the long axis of which is commonly interpreted as a magma-flow indicator. Robust understanding of the emplacement mechanisms of finger-shaped sills, and direct observations supporting finger orientation as magma-flow indicator are lacking. In this paper, we present the results of detailed structural mapping on an exceptional, easily accessible 1-km long outcrop in the Neuquen Basin, Argentina, that exhibits a sill, its contacts and the structures in the finely layered sedimentary host rock. We show that the sill is made of distinct segments that grew, inflated or coalesced. We also demonstrate that the fingers were emplaced according to the viscoelastic fingering or viscous indenter models, with no field evidence of tensile elastic fracture mechanism as commonly assumed in mechanical models of sill emplacement. We identified new structural criteria at the intrusion's contacts for inferring magma flow direction during the magma emplacement. Our small-scale structural observations carried out on a seismic-scale outcrop have the potential to considerably aid the structural interpretation of seismic data imaging igneous sills, i.e. to fill the standard gap between outcrop-scale field observations and seismic-scale geophysical data.
机译:现场和地震观测表明,许多基石都呈现出叶状形态。每个瓣对应于呈现出指状形状的不同火成岩段,其长轴通常被解释为岩浆流指示剂。缺乏对手指形门槛的定位机制的深入了解,缺乏直接支持手指定向作为岩浆流量指示符的观测结果。在本文中,我们介绍了在阿根廷内乌肯盆地一个异常且易于接近的1公里长露头上进行的详细结构映射的结果,该露头具有基石,其接触面和层状沉积宿主岩中的结构。我们表明,窗台由增长,膨胀或合并的不同部分组成。我们还证明了手指是根据粘弹性指法或粘性压头模型放置的,没有现场证据表明窗台放置的机械模型通常会假定拉伸弹性断裂机制。我们在侵入体的接触处确定了新的结构准则,以推断岩浆侵位期间的岩浆流向。我们在地震规模露头上进行的小规模结构观测有潜力极大地帮助对地震数据成像火基的结构解释,即填补露头规模现场观测与地震尺度地球物理数据之间的标准差距。

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