首页> 外文期刊>Journal of structural geology >An alternative emplacement model for the classic Ardnamurchan cone sheet swarm, NW Scotland, involving lateral magma supply via regional dykes
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An alternative emplacement model for the classic Ardnamurchan cone sheet swarm, NW Scotland, involving lateral magma supply via regional dykes

机译:苏格兰西北西北地区经典Ardnamurchan锥片群的另一种进驻模型,涉及通过区域堤坝供应岩浆

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摘要

Sub-volcanic intrusive networks, of which cone sheets are recognised as a major constituent, partially control volcano growth and eruption style. The accepted cone sheet model is that these confocally dipping intrusions originate from an unexposed central magma chamber through dip-parallel magma flow. However, the emplacement mechanism of cone sheets remains poorly understood. The ~ 58 Ma cone sheet swarm of Ardnamurchan, NW Scotland, offers an excellent opportunity to further resolve the emplacement dynamics of cone sheets, through studying magma flow, and their importance in volcanic edifice construction. Structural measurements and anisotropy of magnetic susceptibility (AMS) analyses have constrained a lateral magma flow pattern, consistently oriented NW-SE, in the majority of the Ardnamurchan cone sheets. Field observations also highlight the importance of host rock structure and interference between competing local and regional stress fields in controlling intrusion geometry. Our observations suggest cone sheet formation may be linked to laterally propagating NW-SE trending regional dykes, sourced from laterally adjacent magmatic systems (likely the Palaeogene Mull Central Complex), which are deflected around the central complex by stress field interference. Implicitly, edifice construction and potential eruption precursors observed at a volcano may instigate, or result from, magmatic activity in laterally adjacent volcanic systems.
机译:次火山侵入网络(其中圆锥体薄片被认为是主要成分)部分控制了火山的生长和喷发方式。公认的锥板模型是这些共浸的侵入体是通过倾角平行的岩浆流起源于未暴露的中央岩浆室。但是,对锥片的放置机理仍然知之甚少。苏格兰西北部Ardnamurchan的〜58 Ma锥片群提供了极好的机会,可以通过研究岩浆流动及其在火山大厦建设中的重要性,进一步解决锥片的进位动力学问题。在大多数Ardnamurchan锥片中,磁化率(AMS)分析的结构测量和各向异性已经限制了横向岩浆流动模式,即NW-SE方向一致。现场观察还强调了母岩结构的重要性以及在控制侵入几何学方面竞争的局部和区域应力场之间的干扰。我们的观察结果表明,锥片的形成可能与横向传播的西北向东南的区域性堤坝有关,这种堤坝源于横向相邻的岩浆系统(可能是古近纪马尔中央构造体),该构造岩体在应力集中的干扰下绕中央构造体偏转。隐含地,在火山中观察到的建筑物构造和潜在的喷发前兆可能会引发或源自横向相邻火山系统中的岩浆活动。

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  • 来源
    《Journal of structural geology》 |2012年第10期|p.73-91|共19页
  • 作者单位

    School of Geography, Earth and Environmental Science, University of Birmingham, Edgbaston, Birmingham B75 2TT, UK,Department of Earth Science and Engineering, Imperial College, London SW7 2BP, UK;

    School of Geography, Earth and Environmental Science, University of Birmingham, Edgbaston, Birmingham B75 2TT, UK;

    School of Physical and Geographical Sciences, Keele University, Keele ST5 5BG, UK;

    School of Geography, Earth and Environmental Science, University of Birmingham, Edgbaston, Birmingham B75 2TT, UK;

    School of Geography, Earth and Environmental Science, University of Birmingham, Edgbaston, Birmingham B75 2TT, UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    anisotropy of magnetic susceptibility; ardnamurchan; cone sheets; inclined sheets; regional dykes;

    机译:磁化率各向异性;ardnamurchan;锥片倾斜的床单;区域堤防;

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