雄安新区容城地热田地热流体化学特征
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本文为中国地质调查局项目(编号DD20189112);中国地质科学院基础科研业务费项目(编号JYYWF20181101);国家重点研发计划(编号2018YFC0604306)资助的成果。


Geochemical characteristics of the geothermal fluid in the Rongcheng geothermal field, Xiong’an New Area
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    摘要:

    地热流体的水文地球化学特征及演化可以揭示地热水的深部循环机理,对地热资源的开发利用有着重要意义。基于容城地热田的地热地质条件,本文选取了容城地热田16个深部地热井水和2个保定山区浅层冷水井进行了水化学特征及同位素分析,计算了热储温度和热循环深度,最后进行了反向水文地球化学路径模拟分析地热流体在深部的水岩反应运移过程。结果表明研究区深部地热井水化学类型为HCO3·Cl- Na型,保定山区水化学类型为HCO3- Ca·Mg型,在容城地热田中几乎所有离子与Cl都不存在显著正相关关系,微量元素主要来源于相关矿物的溶解。容城地热田Na+浓度很高,说明容城地热田的地下水径流较长,热循环深度大,HBO2的含量较多,说明其地下热水径流较小,流速比较弱。D、18O同位素基本在大气降水线附近,计算地热井的补给高程为665. 17~165. 17m,与保定山区海拔相近,表明了研究区地热水来源为山前补给和大气降水。研究区深部热储温度为57~98℃,热循环深度在1331~2483m之间。

    Abstract:

    The hydrogeochemical characteristics and evolution of geothermal fluids can reveal the deep circulation mechanism of geothermal water, which is of great significance for the development and utilization of geothermal resources. Based on the geothermal geological conditions of the Rongcheng geothermal field, this paper selects 16 deep geothermal well waters and 2 cold waters in the Baoding mountain area to analyze their hydrochemical characteristics and isotopes, calculate the temperature of thermal reservoir and depth of the thermal cycle. Finally, we undertake reverse hydrogeochemical path simulation to analyze the water rock reaction and migration process of geothermal fluid in the deep. The results show that the hydrochemical type of deep geothermal wells in the study area is of the HCO3·Cl- Na type, and that of Baoding mountain area is of the HCO3-Ca·Mg type. There is no significant positive correlation between Cl and almost all ions in the Rongcheng geothermal field, indicating that trace elements mainly come from the dissolution of related minerals. The high concentration of Na+ in the Rongcheng geothermal field indicates that the groundwater runoff is long and the depth of thermal cycle is large. The content of HBO2 is higher, which means that the runoff of geothermal water is smaller and the velocity is weaker. D and 18O isotopes are basically near the atmospheric precipitation line, and the calculated recharge elevation of geothermal wells is 665. 17~1165. 17 m, which is close to the altitude of the Baoding mountain area, indicating that the geothermal water sources in the study area are mountain front recharge and atmospheric precipitation. The deep thermal storage temperature is 57~98 ℃, and the depth of thermal cycle is 1331~2483 m. During the progress of the groundwater from the Baoding mountain area to a plain geothermal well, in addition to water rock action, a series of processes such as boiling, evaporation, mixing of cold water and precipitation supplementation have taken place, which makes the ion content of groundwater change greatly.

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赵佳怡,张薇,马峰,朱喜,张汉雄,王贵玲.2020.雄安新区容城地热田地热流体化学特征[J].地质学报,94(7):1991-2001.
ZHAO Jiayi, ZHANG Wei, MA Feng, ZHU Xi, ZHANG Hanxiong, WANG Guiling.2020. Geochemical characteristics of the geothermal fluid in the Rongcheng geothermal field, Xiong’an New Area[J]. Acta Geologica Sinica,94(7):1991-2001.

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  • 收稿日期:2020-05-07
  • 最后修改日期:2020-06-08
  • 录用日期:2020-06-09
  • 在线发布日期: 2020-06-09
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