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首页> 外文期刊>Journal of Volcanology and Geothermal Research >Cyclic processes and factors leading to phreatic eruption events: Insights from the 25 September 2007 eruption through Ruapehu Crater Lake, New Zealand
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Cyclic processes and factors leading to phreatic eruption events: Insights from the 25 September 2007 eruption through Ruapehu Crater Lake, New Zealand

机译:导致潜水爆发事件的循环过程和因素:2007年9月25日通过新西兰鲁阿佩胡火山口湖爆发的真相的见解

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A dangerous block-ash eruption occurred without warning from Ruapehu Crater Lake on 25 September 2007, ending a 6 month period of temperature decline in the lake. The northerly-directed blast sent ballistics of up to 2 m diameter more than 2 km from the source. The ejecta comprised a variety of volcano-lacustrine lithologies, many showing evidence of intense hydrothermal alteration. Petrographic studies of the ballistics reveal numerous examples of pores/vesicles being filled with assemblages of elemental sulphur, anhydrite, pyrite and natroalunite, and many ballistics exuded liquid sulphur from their pores during cooling at atmospheric pressure. Up to 5% of the ash was comprised of fine-grained, juvenile glass material, confirming the presence of magma in the shallow vent environment.rnA long-recognised characteristic of this volcano is the thermal cycling behaviour of the Crater Lake, behaviour which has remained effectively unchanged through two magmatic eruption events in 1945 and in 1995/96. Airborne measurements of CO_2 and SO_2 flux from the volcano since 2003 show a strong, positive correspondence with temperature cycling in the lake, pointing to a definitive link between heat and mass discharge through the system. Low SO_2 emission rates and C/S mole ratios >30 were typical of the period 2003 to early 2007, and appear to reflect vigorous scrubbing of S gases in the hydrothermal system during this time.rnTo better understand the chemical and physical processes operating in this very dynamic volcanic-hydrothermal system, and its propensity to develop potentially dangerous hydrothermal seals, we have developed an integrated finite-difference (TOUGH2) heat-mass transport simulation of the hydrothermal environment. The model, which is constrained by observed heat and mass flux characteristics of the volcano, demonstrates the transient nature of the heating cycles on the vent/lake system. Of particular interest is the role of CO_2 as a relatively inert, pressure-transmitting medium in the hydrothermal environment. Seal formation was simulated using the reactive transport code X1t, which showed that condensation of magmatic vapour into a highly porous medium of andesitic composition leads to rapid formation of an elemental sulphur-anhydrite-natroalunite mineral assemblage, and a drastic reduction in permeability. We suggest that since the 1995/96 vent-clearing eruptions, a shroud of elemental sulphur and other alteration phases formed along the margins of the 2-phase liquid-vapour region enclosing the conduit. This effectively seals the upper portion of the vent from the adjacent, hydrostatically controlled environment, and allows for development of pressurised, vapour-static gas columns beneath the northern and central vents.
机译:鲁阿佩胡火山口湖在2007年9月25日发生了危险的灰烬喷发,没有预警,结束了该湖6个月的温度下降期。朝北的爆炸向距离震源2公里以上的地方发射了直径达2 m的弹道。喷出物包括各种火山湖相岩性,其中许多显示出强烈的热液蚀变证据。弹道学的岩石学研究表明,大量孔隙/小泡中充斥着元素硫,硬石膏,黄铁矿和金云母的组合,许多弹道在大气压力冷却期间从其孔中渗出液态硫。火山灰中多达5%的灰分是由细颗粒的青少年玻璃材料构成的,这证实了在浅层通风口环境中存在岩浆.rn火山的热循环行为是火山岩的长期公认特征,这种行为具有通过1945年和1995/96年的两次岩浆喷发事件,实际上保持不变。自2003年以来,对火山中的CO_2和SO_2通量进行机载测量,显示出与湖中温度循环的强烈正相关,表明该系统的热量与质量排放之间存在明确的联系。在2003年至2007年初期间,典型的低SO_2排放速率和C / S摩尔比大于30,这似乎反映了这段时间热液系统中S气体的强烈洗涤。rn为了更好地了解在此期间进行的化学和物理过程高度动态的火山热液系统及其发展潜在危险的热液密封的倾向,我们已经开发了热液环境的集成有限差分(TOUGH2)热质输运模拟。该模型受观察到的火山的热量和质量通量特性的约束,表明了排气/湖面系统加热循环的瞬态性质。特别令人感兴趣的是CO_2在水热环境中作为一种相对惰性的压力传递介质的作用。使用反应性传输代码X1t模拟了密封的形成,这表明岩浆蒸汽凝结成安山岩成分的高度多孔介质会导致快速形成元素硫-硬石膏-钠铝辉石矿物组合,并显着降低渗透率。我们建议,自1995/96年度通气口喷发以来,沿围绕导管的2相液体蒸气区域的边缘形成了元素硫和其他蚀变相的覆盖层。这样可以有效地将排气孔的上部与相邻的受静液压控制的环境密封起来,并允许在北部和中央排气孔下方开发加压的,静气的气柱。

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