首页> 外文OA文献 >DEEP RESERVOIR TEMPERATURESudOF LOW-ENTHALPY GEOTHERMAL SYSTEMS IN TUNISIA:udNEW CONSTRAINTS FROM CHEMISTRY OF THERMAL WATERS
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DEEP RESERVOIR TEMPERATURESudOF LOW-ENTHALPY GEOTHERMAL SYSTEMS IN TUNISIA:udNEW CONSTRAINTS FROM CHEMISTRY OF THERMAL WATERS

机译:深水库温度 ud突尼斯的低焓地热系统: ud热水化学的新约束

摘要

Tunisia is characterized by hot and warm groundwaters (temperature up to 75 °C) which represent the surface manifestation of geothermaludsystems hosted in carbonate-evaporite rock sequences. The T-conditions of Tunisia deep thermal reservoirs are here evaluated for the first time at the regional scale. The results here shown clearly highlight the limitations inherent in the application ofudcommon geothermometric methods in the estimation of equilibrium temperatures in sedimentary environments. The modeling approach proposed by Chiodini et alii (1995), which makes use of the ratios between dissolved HCO3, SO4 and F, provides the most reliable results, and allows us to derive equilibrium temperatures up to 200 °C for the Tunisian thermal reservoirs. Very high equilibrium pCO2 (100 bar) values are also estimated, likely indicative of the confined aquifer conditions.
机译:突尼斯的特征是高温和高温的地下水(温度高达75°C),这代表了碳酸盐-蒸发岩序列中地热 udsystems的表面表现。突尼斯深层热储层的T条件在这里是第一次在区域范围内进行评估。此处显示的结果清楚地表明,在估算沉积环境中的平衡温度时,通常的地热法在应用中固有的局限性。 Chiodini et alii(1995)提出的建模方法利用了溶解的HCO3,SO4和F之间的比率,提供了最可靠的结果,并使我们能够得出突尼斯储层的平衡温度高达200°C。还估算出非常高的平衡pCO2(100 bar)值,这很可能表明受限的含水层状况。

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