首页> 外文期刊>Journal of Volcanology and Geothermal Research >Fracture permeability and water-rock interaction in a shallow volcanic groundwater reservoir and the concern of its interaction with the deep geothermal reservoir of Mt. Amiata, Italy
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Fracture permeability and water-rock interaction in a shallow volcanic groundwater reservoir and the concern of its interaction with the deep geothermal reservoir of Mt. Amiata, Italy

机译:浅层火山岩地下水储层的裂缝渗透率和水岩相互作用及其与深山地热储层相互作用的关注。意大利Amiata

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摘要

The study of core samples and in-hole data of a 545 m deep well drilled in Mt. Amiata extinct volcano allowed a better characterization of the shallow volcanic reservoir, which is exploited for domestic utilization. The new discovery is that: 1) the water table level is at a depth of 302 m b.g.l. (783 m a.s.l.), in agreement with recent magnetotelluric surveys, and in disagreement with previous hydrogeological models; 2) there is no evidence of present or past interaction with geothermal fluids, the alteration minerals being present only in fractures within the volcanic rocks and indicating fluids of low temperature and relatively low pH due to gas inlets in the volcanic reservoir; and 3) the volcanic reservoir is characterized by fracture permeability, as shown by the fracture system along the well. On the base of these new data the previous geological and hydrogeological models of Mt. Amiata should be revised. In particular, the hypothesis of a catastrophic lowering of the water table in a short time span is unlikely.
机译:对山顶545 m深井的岩心样品和井内数据进行研究。阿米亚塔(Amiata)灭绝的火山可以更好地表征浅层火山岩储层,供家庭使用。新发现是:1)地下水位在302 m b.g.l的深度。 (783 m a.s.l.),与最近的大地电磁测量结果一致,并且与先前的水文地质模型不一致; 2)没有证据表明现在或过去与地热流体相互作用,蚀变矿物仅存在于火山岩内的裂缝中,表明由于火山岩储层中的气体入口而导致的温度较低且pH值较低的流体; 3)火山岩储层的特征是裂缝渗透率,如沿井的裂缝系统所示。在这些新数据的基础上,山的以前的地质和水文地质模型。应修改Amiata。特别是,在短时间内水位发生灾难性下降的假设不太可能。

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