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首页> 外文期刊>Journal of Volcanology and Geothermal Research >Evidence for a new shallow magma intrusion at La Soufriere of Guadeloupe (Lesser Antilles) Insights from long-term geochemical monitoring of halogen-rich hydrothermal fluids
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Evidence for a new shallow magma intrusion at La Soufriere of Guadeloupe (Lesser Antilles) Insights from long-term geochemical monitoring of halogen-rich hydrothermal fluids

机译:瓜德罗普岛拉索夫里耶尔新的浅岩浆侵入的证据(安的列斯群岛)富卤素热液长期地球化学监测的见解

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摘要

More than three decades of geochemical monitoring of hot springs and fumaroles of La Soufriere of Guadeloupe allows the construction of a working model of the shallow hydrothermal system. This system is delimited by the nested caldera structures inherited from the repeated flank collapse events and the present dome built during the last magmatic eruption (1530 AD) and which has been highly fractured by the subsequent phreatic or phreatomagmatic eruptions. Because it is confined into the low volume, highly compartmented and partially sealed upper edifice structure, the hydrothermal system is highly reactive to perturbations in the volcanic activity (input of deep magmatic fluids), the edifice structure (sealing and fracturing) and meteorology (wet tropical regime). The current unrest, which began with a mild reactivation of fumarolic activity in 1990, increased markedly in 1992 with seismic swarms and an increase of degassing from the summit of the dome. In 1997 seismic activity increased further and was accompanied by a sudden high-flux HCl-rich gas from summit fumaroles. We focus on the interpretation of the time series of the chemistry and temperature of fumarolic gases and hot springs as well as the relative behaviours of halogens (F, Cl, Br and I). This extensive geochemical time series shows that the deep magmatic fluids have undergone large changes in composition due to condensation and chemical interaction with shallow groundwater (scrubbing). It is possible to trace back these processes and the potential contribution of a deep magmatic source using a limited set of geochemical time series: T, CO_2 and total S content in fumaroles, T and Cl~- in hot springs and the relative fractionations between F, Cl, Br and I in both fluids. Coupling 35 years of geochemical data with meteorological rainfall data and models of ion transport in the hydrothermal aquifers has allowed us to identify a series of magmatic gas pulses into the hydrothermal system since the 1976-1977 crisis. The contrasting behaviours of S- and Cl-bearing species in fumarolic gas and in thermal springs suggest that the current activity is the result of a new magma intrusion which was progressively emplaced at shallow depth since -1992. Although it might still be evolving, the characteristics of this new intrusion indicate that it has already reached a magnitude similar to the intrusion that was emplaced during the 1976-1977 eruptive crisis. The assessment of potential hazards associated with evolution of the current unrest must consider the implications of recurrent intrusion and further pressurisation of the hydrothermal system on the likelihood of renewed phreatic explosive activity. Moreover, the role of hydrothermal pressurisation on the basal friction along low-strength layers within the upper part of the edifice must be evaluated with regards to partial flank collapse. At this stage enhanced monitoring, research, and data analysis are required to quantify the uncertainties related to future scenarios of renewed eruptive activity and magmatic evolution.
机译:瓜德罗普岛La Soufriere温泉和喷气孔的地球化学监测已经进行了三十多年,可以建立浅层热液系统的工作模型。该系统由重复的侧面崩塌事件继承的嵌套火山口结构和最后一次岩浆喷发(公元1530年)时建立的当前圆顶界定,并由于随后的潜水或吞噬岩浆喷发而高度断裂。由于热液系统被限制在小体积,高度分隔和部分密封的高层建筑结构中,因此它对火山活动(深岩浆流体的输入),建筑物结构(密封和压裂)和气象(湿润)的扰动具有很高的反应性。热带政权)。当前的动荡始于1990年的富马酸活动的轻度恢复,而在1992年由于地震群和从穹顶顶部的脱气增加而明显增加。在1997年,地震活动进一步增加,并伴随着来自山顶喷气孔的高通量富HCl气体的突然出现。我们着重于对富马酸气体和温泉的化学和温度时间序列以及卤素(F,Cl,Br和I)的相对行为的解释。这个广泛的地球化学时间序列表明,深层岩浆流体由于凝结和与浅层地下水的化学相互作用(洗涤)而发生了巨大变化。可以使用一组有限的地球化学时间序列追溯这些过程和深部岩浆源的潜在贡献:富马mar中的T,CO_2和总S含量,温泉中的T和Cl〜-以及F之间的相对分馏,Cl,Br和I都在两种流体中。自1976-1977年危机以来,将35年的地球化学数据与气象降雨数据以及热液含水层中离子迁移模型相结合,使我们得以识别出一系列进入热液系统的岩浆气脉冲。富马岩气和温泉中含S和Cl的物种的对比行为表明,当前活动是自-1992年以来在浅深度逐渐形成的新岩浆侵入的结果。尽管它可能仍在发展,但这种新入侵的特征表明它已经达到了与1976-1977年爆发性危机期间实施的入侵相似的程度。在评估与当前动乱演变相关的潜在危害时,必须考虑反复入侵和热液系统进一步增压对潜水炸药活动重新发生的可能性的影响。此外,必须针对部分侧面塌陷评估水热加压对沿建筑物上部内低强度层的基础摩擦的作用。在这一阶段,需要加强监测,研究和数据分析,以量化与爆发活动和岩浆演化的未来情况有关的不确定性。

著录项

  • 来源
    《Journal of Volcanology and Geothermal Research》 |2014年第15期|247-277|共31页
  • 作者单位

    Univ. P&M Curie, UPMC-Paris 06, UMR 7193, ISTeP, Laboratoire de Petrologie, Geochimie, Volcanologie, 4 place Jussieu, 75230 Cedex 05 Paris, France;

    Institut de Physique du Globe de Paris, Sorbonne Paris Cite, Univ Paris Diderot, UMR 7154 CNRS, 1 rue Jussieu, 75238 Cedex 05 Paris, France,OVSG-IPGP, Observatoire Volcanologique et sismologique de la Soufriere de Guadeloupe, IPGP, Le Houeelmont, 91173 Guadeloupe, France;

    Institut de Physique du Globe de Paris, Sorbonne Paris Cite, Univ Paris Diderot, UMR 7154 CNRS, 1 rue Jussieu, 75238 Cedex 05 Paris, France,OVSG-IPGP, Observatoire Volcanologique et sismologique de la Soufriere de Guadeloupe, IPGP, Le Houeelmont, 91173 Guadeloupe, France;

    Institut de Physique du Globe de Paris, Sorbonne Paris Cite, Univ Paris Diderot, UMR 7154 CNRS, 1 rue Jussieu, 75238 Cedex 05 Paris, France;

    OVSG-IPGP, Observatoire Volcanologique et sismologique de la Soufriere de Guadeloupe, IPGP, Le Houeelmont, 91173 Guadeloupe, France;

    OVSG-IPGP, Observatoire Volcanologique et sismologique de la Soufriere de Guadeloupe, IPGP, Le Houeelmont, 91173 Guadeloupe, France;

    Institut de Physique du Globe de Paris, Sorbonne Paris Cite, Univ Paris Diderot, UMR 7154 CNRS, 1 rue Jussieu, 75238 Cedex 05 Paris, France,OVSG-IPGP, Observatoire Volcanologique et sismologique de la Soufriere de Guadeloupe, IPGP, Le Houeelmont, 91173 Guadeloupe, France;

    Institut de Physique du Globe de Paris, Sorbonne Paris Cite, Univ Paris Diderot, UMR 7154 CNRS, 1 rue Jussieu, 75238 Cedex 05 Paris, France,OVSG-IPGP, Observatoire Volcanologique et sismologique de la Soufriere de Guadeloupe, IPGP, Le Houeelmont, 91173 Guadeloupe, France;

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

    Hydrothermal system; Geochemical monitoring; Halogens; Magma intrusion; Magma degassing; Volcanic hazard;

    机译:水热系统;地球化学监测;卤素;岩浆侵入;岩浆脱气;火山危害;

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