首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Reconstruction of different original water chemical compositions and estimation of reservoir temperature from mixed geothermal water using the method of integrated multicomponent geothermometry: A case study of the Gonghe Basin, northeastern Tibetan Plateau, China
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Reconstruction of different original water chemical compositions and estimation of reservoir temperature from mixed geothermal water using the method of integrated multicomponent geothermometry: A case study of the Gonghe Basin, northeastern Tibetan Plateau, China

机译:综合多组分地热法研究不同原始水化学组成及储层温度估计 - 以藏藏高原池塘盆地盆地盆地

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摘要

The Gonghe geothermal field, northeastern Tibetan Plateau, China, is considered to be a potential target development area for Hot Dry Rock (HDR) resources, where the first Chinese Enhanced Geothermal System (EGS) research project is likely to be located. This area has formed typical layered geothermal reservoirs in a sedimentary basin with an anomalously high geothermal gradient (more than 55 degrees C/km), and the hydrothermal systems at different depths are connected by hidden faults. To investigate the geothermal structure and geo-chemical characteristics, water samples from the Gonghe geothermal field were collected and measured. The method of Integrated Multicomponent Geothermometry (IMG) was used to analyse the mixing processes and to estimate the reservoir temperatures. Due to significant differences in the Al and Mg concentrations between shallow and deep reservoirs, the IMG method, which uses measured and optimized values to reconstruct the composition of shallow and deep geothermal water, was successfully applied to constrain the mixing processes. This study predicted three typical geothermal reservoirs at different depths, and it quite accurately estimated the reservoir temperatures. The methodology of the present work can also be used in other geothermal fields with similar geological and geothermal conditions, to reconstruct the original deep and shallow water compositions from mixing processes, estimate reservoir temperatures, and build conceptual geothermal reservoir models.
机译:中国东北藏高原的工通地热场被认为是热干岩(HDR)资源的潜在目标开发区,其中第一家中国增强地热系统(EGS)研究项目很可能。该区域在沉积盆中形成了典型的层状地热储层,具有异常高地热梯度(超过55摄氏度),不同深度的水热系统通过隐藏的故障连接。为了探讨地热结构和地理化学特性,收集和测量来自Gonghe地热场的水样。用于分析混合过程并估计储层温度的集成多组分地热测定法(IMG)的方法。由于浅层和深层储层之间的Al和Mg浓度的显着差异,成功地应用了使用测量和优化值来重建浅层和深层地热水的组成的IMG方法,以限制混合过程。本研究预测了不同深度的三个典型的地热储层,并且精确地估计了储层温度。目前工作的方法也可用于具有相似地质和地质条件的其他地热场,重建原始的深层和浅水组合物,从混合过程,估计储层温度和建立概念性地热储层模型。

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