Kolkheti自流盆地深部流体的地热条件:水化学和地热测量

Tamar Mikava
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引用次数: 0

摘要

要描述的最重要的问题之一是任何地热系统中含水层的温度。位于热液系统深处的流体提供热量,并控制含水层中热地下水的温度变化。以水化学为基础的地温计已被用来估计不同复合体的地下水温度。然而,水化学地温计测量的平均温度往往是可变的,由于温度和压力随着地热流体的上升而变化,因此很难确定相应的平均地热流体温度。不同的地温计可测量不同的温度范围。有些水化学地温计适用于高温地热系统,有些则适用于中低温地热系统。根据这些地温计,由于大气降水的影响,化学成分的浓度会降低,并且由于与浅层地下水混合而被稀释,因此很难确定一个接近地热系统实际温度的温度。
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Geothermal Conditions of Deep-seated Fluids in the Kolkheti Artesian Basin: Water Chemistry and Geothermometry
Among the most important issues to be characterized is the temperature of the aquifer in any geothermal system. Fluids located deep within a hydrothermal system provide heat, and they control thermal groundwater temperature changes in aquifers. Geothermometers based on water chemistry have been used to estimate groundwater temperatures in various complexes. However, the average temperature measured by hydrochemical geothermometers is often variable, and it is difficult to assign a corresponding average geothermal fluid temperature because temperature and pressure change as the geothermal fluid moves upward. Different geothermometers cover different temperature ranges. Some hydrochemical geothermometers are suitable for high temperature geothermal systems, while others are suitable for medium and low temperature. Based on these geothermometers, it is difficult to assign a temperature that is close to the actual temperature of the geothermal system, because the influence of atmospheric precipitation, which causes a decrease in the concentration of chemical components and dilution due to mixing with shallow groundwater.
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