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Fluid Evolution in the Deep Reservoir of the Mt. Amiata Geothermal Field, Italy

机译:Mt.SiaTa地热场,意大利的水库流体演变

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The fluid-rock interaction processes occurring in deep-seated reservoirs of the Mt. Amiata geothermal fields have been studied to outline a conceptual model of the evolution of the geothermal system. A metamorphic event pre-dating the geothermal activity is evident in the shallower part of the reservoir (above approx2.2 km). The geothermal fluids underwent boiling with degassing and/or mixing and evolved through a lowering of the salinity and the gas content, to the present-day geothermal fluid composition. The high CO_(2) amount, both in paleo- and present-day fluids, can explain the absence and/or rare occurrence of Ca-Al-silicates that represent a common hydrothermal mineral assemblage at these temperatures (i.e. 250-350 deg C). Evidences of contact metamorphism has been observed below 3 km of depth, suggesting temperatures of approximately 500 deg C. The chlorite geothermometry did not give reliable results, while the use of fluid inclusions has been a valid tool to estimate the reservoir temperatures when direct borehole measurements are missing or affected by uncertainty.
机译:已经研究了在MT的深层储存器中发生的流体岩相互作用过程。已经研究了Amiata地热领域,概述了地热系统演变的概念模型。在储层的浅薄部分(高于2.2 km)中,预先约会地热活动的变质事件是显而易见的。地热流体接受沸腾的脱气和/或混合,并通过降低盐度和气体含量而进化,到本日地热流体组合物。高CO_(2)的量,无论是在的古和当今的流体,可以解释不存在和/或在这些温度下表示共同热液矿物组合钙铝硅酸盐(即250-350摄氏度的罕见发生)。在3公里的深度下观察到接触变质的证据,建议大约500℃的温度。氯酸盐地热测定结果​​没有得到可靠的结果,而流体包裹体的使用是一种有效的工具,可以在直接钻孔测量时估计储层温度的有效工具缺失或受到不确定性的影响。

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