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首页> 外文期刊>Journal of Volcanology and Geothermal Research >A multidisciplinary approach to quantify the permeability of the Whakaari/White Island volcanic hydrothermal system (Taupo Volcanic Zone, New Zealand)
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A multidisciplinary approach to quantify the permeability of the Whakaari/White Island volcanic hydrothermal system (Taupo Volcanic Zone, New Zealand)

机译:一种多学科方法来量化华卡里/怀特岛火山热液系统的渗透率(新西兰陶波火山区)

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摘要

Our multidisciplinary study aims to better understand the permeability of active volcanic hydrothermal systems, a vital prerequisite for modelling and understanding their behaviour and evolution. Whakaari/White Island volcano (an active stratovolcano at the north-eastern end of the Taupo Volcanic Zone of New Zealand) hosts a highly reactive hydrothermal system and represents an ideal natural laboratory to undertake such a study. We first gained an appreciation of the different lithologies at Whakaari and (where possible) their lateral and vertical extent through reconnaissance by land, sea, and air. The main crater, filled with tephra deposits, is shielded by a volcanic amphitheatre comprising interbedded lavas, lava breccias, and tuffs. We deployed field techniques to measure the permeability and density/porosity of (1) > 100 hand-sized sample blocks and (2) layered unlithified deposits in eight purpose-dug trenches. Our field measurements were then groundtruthed using traditional laboratory techniques on almost 150 samples. Our measurements highlight that the porosity of the materials at Whakaari varies from similar to 0.01 to similar to 0.7 and permeability varies by eight orders of magnitude (from similar to 10(-19) to similar to 10(-11) m(2)). The wide range in physical and hydraulic properties is the result of the numerous lithologies and their varied microstructures and alteration intensities, as exposed by a combination of macroscopic and microscopic (scanning electron microscopy) observations, quantitative mineralogical studies (X-ray powder diffraction), and mercury porosimetry. An understanding of the spatial distribution of lithology and alteration style/intensity is therefore important to decipher fluid flow within the Whakaari volcanic hydrothermal system. We align our field observations and porosity/permeability measurements to construct a schematic cross section of Whakaari that highlights the salient findings of our study. Taken together, the alteration typical of a volcanic hydrothermal system can result in increases (due to alteration-induced dissolution and fracturing) and decreases (due to hydrothermal precipitation) to permeability. Importantly, a decrease in permeability be it due to fracture sealing in lava, pore-filling alunite precipitation in tuff, near-vent cementation by sulphur, and/or well sorted layers of fine ash can result in pore pressure augmentation. An increase in pore pressure could result in ground deformation, seismicity, jeopardise the stability of the volcanic slopes, and/or drive the wide variety of eruptions observed at Whakaari. Our systematic study offers the most complete porosity-permeability dataset for a volcanic hydrothermal system to date. These new data will inform and support modelling, unrest monitoring, and eruption characterisation at Whakaari and other hydrothermally modified volcanic systems worldwide. (C) 2016 Elsevier B.V: All rights reserved.
机译:我们的多学科研究旨在更好地了解活跃的火山热液系统的渗透性,这是建模和了解其行为和演化的重要前提。华卡里/怀特岛火山(位于新西兰陶波火山区东北端的活跃平流火山)拥有高度反应性的热液系统,是进行此类研究的理想自然实验室。我们首先通过陆,海,空侦察,了解了华卡里(Whakaari)的不同岩性,并在可能的情况下了解了它们的横向和垂直范围。主火山口充满了特非拉沉积物,由火山圆形露天剧场掩护,其中包括层状熔岩,熔岩角砾岩和凝灰岩。我们部署了现场技术来测量(1)> 100个手工大小的样品块和(2)在八个专用挖沟中分层的非石化沉积物的渗透率和密度/孔隙度。然后使用传统的实验室技术对近150个样品进行实地测量。我们的测量结果表明,华卡里(Whakaari)材料的孔隙度从相似的0.01改变到相似的0.7,渗透率变化了八个数量级(从相似的10(-19)到相似的10(-11)m(2))。 。物理和水力性质的广泛范围是多种岩性及其微观结构和蚀变强度变化的结果,这些现象是通过宏观和微观(扫描电子显微镜)观察,定量矿物学研究(X射线粉末衍射),和汞孔隙率法。因此,了解岩性的空间分布和蚀变样式/强度对破译华卡里火山热液系统中的流体流动很重要。我们将现场观察结果和孔隙度/渗透率测量结果进行对比,以构建Whakaari的示意剖面图,突出显示我们研究的主要发现。两者合计,火山热液系统的典型变化可导致渗透率增加(由于变化引起的溶解和破裂)和减少(由于热液沉淀)。重要的是,由于熔岩中的裂缝封闭,凝灰岩中孔隙填充的亚矾石沉淀,硫磺近乎胶结的胶结作用和/或细灰分选得很好的层,渗透性会降低,这会导致孔隙压力增大。孔隙压力的增加可能导致地面变形,地震活动,危及火山斜坡的稳定性和/或驱使在华卡里(Whakaari)观测到的各种喷发。我们的系统研究提供了迄今为止火山热液系统最完整的孔隙度-渗透率数据集。这些新数据将为Whakaari和全球其他热液化火山系统的建模,动荡监测和喷发特征提供信息并提供支持。 (C)2016 Elsevier B.V:保留所有权利。

著录项

  • 来源
    《Journal of Volcanology and Geothermal Research》 |2017年第15期|88-108|共21页
  • 作者单位

    Univ Strasbourg, Geophys Expt, Inst Phys Globe Strasbourg, UMR CNRS 7516,EOST, 5 Rue Rene Descartes, F-67084 Strasbourg, France;

    Univ Canterbury, Geol Sci, Private Bag 4800, Christchurch 8140, New Zealand;

    Univ Strasbourg, Geophys Expt, Inst Phys Globe Strasbourg, UMR CNRS 7516,EOST, 5 Rue Rene Descartes, F-67084 Strasbourg, France;

    Univ Liverpool, Earth Ocean & Ecol Sci, Liverpool L69 3GP, Merseyside, England;

    Ludwig Maximilians Univ Munchen, Earth & Environm Sci, Theresienstr 41-3, D-80333 Munich, Germany;

    Kakapo Disaster Resilience, 2-48 Brockworth Pl, Christchurch 8011, New Zealand;

    Univ Strasbourg, Geophys Expt, Inst Phys Globe Strasbourg, UMR CNRS 7516,EOST, 5 Rue Rene Descartes, F-67084 Strasbourg, France;

    Tech Univ Munich, Lehrstuhl Ingn Geol, Arcisstr 21, D-80333 Munich, Germany;

    Ludwig Maximilians Univ Munchen, Earth & Environm Sci, Theresienstr 41-3, D-80333 Munich, Germany;

    Univ Liverpool, Earth Ocean & Ecol Sci, Liverpool L69 3GP, Merseyside, England;

    Univ Canterbury, Geol Sci, Private Bag 4800, Christchurch 8140, New Zealand;

    Univ Canterbury, Geol Sci, Private Bag 4800, Christchurch 8140, New Zealand;

    GNS Sci, 1 Fairway Ave, Avalon 5040, New Zealand;

    Univ Strasbourg, Geophys Expt, Inst Phys Globe Strasbourg, UMR CNRS 7516,EOST, 5 Rue Rene Descartes, F-67084 Strasbourg, France;

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

    Alteration; Fracture; Porosity; Permeability; Lava; Tuff; Pore pressure;

    机译:蚀变;破裂;孔隙率;渗透率;熔岩;凝灰岩;孔压;

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