片状侵入体的分段尖端几何形状,II:尖端几何形状的现场观测和侵位机制演化模型

IF 2.5 Q2 Earth and Planetary Sciences
Volcanica Pub Date : 2020-11-03 DOI:10.31223/x5sw28
T. Stephens, R. Walker, D. Healy, A. Bubeck
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引用次数: 8

摘要

火成岩片侵入体在几个数量级上是分段的,分段尖端的几何形状通常被认为表明了传播机制(脆性或非脆性)。推断出所提出的传播机制代表了岩浆初始侵位期间的宿主岩力学性质;通常,这些模型不考虑显示相同岩性内一系列尖端几何形状的分段集。我们对英国斯凯岛小Minch sill杂岩的玄武岩岩床段及其相关宿主岩变形进行了详细的结构表征,并与另外三个侵入岩组(美国犹他州;英国穆尔和奥克尼)的岩段几何形状进行了更广泛的比较。每个独立的寄主岩性都显示出寄主岩石变形的多种尖端几何形状和样式,从弹性脆性断裂到粘性压痕和流化。我们将这一范围的宿主岩石变形归因于薄板生长和停滞期间尖端发生的演化条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Segment tip geometry of sheet intrusions, II: Field observations of tip geometries and a model for evolving emplacement mechanisms
Igneous sheet intrusions are segmented across several orders of magnitude, with segment tip geometry commonly considered indicative of the propagation mechanism (brittle or non-brittle). Proposed propagation mechanisms are inferred to represent host rock mechanical properties during initial magma emplacement; typically, these models do not account for segment sets that show a range of tip geometries within the same lithology. We present a detailed structural characterization of basaltic sill segments and their associated host rock deformation from the Little Minch Sill Complex, Isle of Skye, UK, and a broader comparison with segment geometries in three additional intrusive suites (Utah, USA; and Mull and Orkney, UK).  Each separate host lithology shows multiple tip geometries and styles of host rock deformation, from elastic-brittle fracture, to viscous indentation and fluidisation. We attribute this range of host rock deformations to evolving conditions that occur at the tips both during sheet growth and arrest.  
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来源期刊
Volcanica
Volcanica Earth and Planetary Sciences-Geology
CiteScore
4.40
自引率
0.00%
发文量
21
审稿时长
21 weeks
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