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首页> 外文期刊>Periodico di mineralogia >Secondary hydrothermal minerals in buried rocks at the Campi Flegrei caldera, Italy: A possible tool to understand the rock-physics and to assess the state of the volcanic system
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Secondary hydrothermal minerals in buried rocks at the Campi Flegrei caldera, Italy: A possible tool to understand the rock-physics and to assess the state of the volcanic system

机译:意大利Campi Flegrei火山口的地下岩石中的次生热液矿物:了解岩石物理学和评估火山系统状态的可能工具

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The distribution of the alteration assemblages and the related physico-chemical changes induced in the rocks with depth, may provide useful information on the state of the system. Drillholes are the only way to define hydrothermal alteration depth-profiles in variable geological contexts. Deep drillings exploiting programs were conducted since the 1970's by the Agip-Enel Joint Venture in the Quaternary Campi Flegrei caldera (southern Italy), where a geothermal system has been active since at least historical times. New macroscopic and microscopic investigations were performed on selected samples made available by Agip in order to: 1) define the precursor lithology, 2) describe the relationships among texture, mineralogy and depth of the studied core samples and 3) examine the character of the secondary minerals and their distribution with depth and temperature. The new data are integrated with physical properties and elastic parameters of cored rocks, as well as structural information and field data, all available from the physical, seismological, geodetical and volcanological literature. The depth-related multi-parameters profiles provide evidence on the different behavior of the buried rocks beneath the Licola 1, Mofete and San Vito 1 areas, sited in three structurally different sectors of the caldera. The features of the hydrothermally altered rocks are a key to interpret the heterogeneities of the Campi Flegrei substratum, as deduced by velocity, attenuation and scattering P- and S- waves tomography. The time and space distribution of both the eruptive vents and the extruded magma volumes are consistent with the results of our analysis. Therefore, we interpret the observed Campi Flegrei geothermal system as a response to the distribution of volcanic activity in two structurally distinct sectors of the caldera. The central-eastern sector, where the San Vito 1 well was drilled, represents the preferential pathways for both gas escape and magma ascent at least since 8 kyrs, in contrast with the other sites of the caldera where eruptions occurred with minor frequency and magnitude.
机译:在深度变化的岩石中引起的蚀变组合的分布和相关的理化变化,可能会提供有关系统状态的有用信息。钻孔是在变化的地质环境中定义热液蚀变深度剖面的唯一方法。自1970年代以来,Agip-Enel合资企业在第四纪Campi Flegrei火山口(意大利南部)开展了深层钻探开发计划,该地热系统至少自历史以来就一直活跃。对Agip提供的选定样品进行了新的宏观和微观研究,以:1)定义前驱岩性,2)描述所研究岩心样品的质地,矿物学和深度之间的关系,以及3)检查次生岩性矿物及其随深度和温度的分布。新数据与岩心的物理特性和弹性参数以及结构信息和现场数据集成在一起,所有这些都可以从物理,地震,大地测量和火山学文献中获得。与深度有关的多参数剖面提供了证据,证明了位于破火山口三个结构不同区域的Licola 1,Mofete和San Vito 1地区下方的地下岩石具有不同的行为。热液蚀变岩石的特征是解释Campi Flegrei基底非均质性的关键,该非均质性是由速度,衰减和散射的P波和S波层析成像推论得出的。喷发口和挤压岩浆体积的时间和空间分布与我们的分析结果一致。因此,我们将观察到的Campi Flegrei地热系统解释为对火山口在两个结构不同的扇区中火山活动分布的响应。至少从8吉尔起,在中东部地区钻了圣维托1井,代表了天然气逸出和岩浆上升的优先通道,而破火山口的其他地方则以较小的频率和幅度爆发。

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