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Application of Integrated Multicomponent Geothermometry to a Tengchong Geothermal Field, Southwestern China

机译:综合多组分地水测定在中国西南部腾冲地热田的应用

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Geothermal reservoir temperature is an important parameter of geothermal research and development. Classical geothermometers have been commonly applied to determine geothermal temperatures. When the deep geochemical signatures are masked by effects of gas loss, mixing and/or dilution, these "classical" geothermometers often give inaccurate results. The integrated multicomponent geothermometry (IMG) coupled with numerical optimization is able to reconstruct deep fluid chemical composition and give relatively reasonable results. Using the IMG simulation method, we have investigated geothermal reservoir temperatures for a Tengchong geothermal field in Southwestern China. The results show that the reservoir temperature in the study area ranges from 206 to 250 degrees Celsius, which is consistent with field observations during geothermal exploration. The results of the quartz geothermometer are closest to the IMG results. Therefore, we believe the optimized IMG is the most credible geothermometry in this study area. Al and Mg concentrations have significant impact on precipitation and dissolution of minerals. Accurate selection of reservoir rock minerals is the key for the success of the use of the integrated multicomponent geothermometry.
机译:地热水库温度是地热研发的重要参数。经典的地质测量仪已经普遍应用于确定地热温度。当通过气体损失,混合和/或稀释的效果掩盖深层地球化学签名时,这些“古典”地热测量仪通常会产生不准确的结果。与数值优化耦合的集成多组分地热测定法(IMG)能够重建深层流体化学成分并提供相对合理的结果。采用IMG仿真方法,我们研究了中国西南腾冲地热场的地热水库温度。结果表明,研究区的储层温度范围为206至250摄氏度,这与地热勘探过程中的现场观测一致。石英地热计的结果最接近IMG结果。因此,我们认为优化的IMG是该研究区域中最可靠的地热测定。 Al和Mg浓度对矿物质的沉淀和溶解产生显着影响。精确选择水库岩石矿物质是使用集成多组分地热测定的成功的关键。

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