首页> 外文OA文献 >Environmental isotopic and hydrochemical characteristics of groundwater systems in Daying and Qicun geothermal fields, Xinzhou Basin, Shanxi, China
【2h】

Environmental isotopic and hydrochemical characteristics of groundwater systems in Daying and Qicun geothermal fields, Xinzhou Basin, Shanxi, China

机译:山西忻州盆地大盈,祁村地热田地下水系统环境同位素和水化学特征

摘要

The conceptual hydrogeological model of the low to medium temperature Daying and Qicun geothermal fields has been proposed, based on hydrochemical characteristics and isotopic compositions. The two geothermal fields are located in the Xinzhou basin of Shanxi, China and exhibit similarities in their broad-scale flow patterns. Geothermal water is derived from the regional groundwater flow system of the basin and is characterized by Cl center dot SO(4)-Na type. Thermal water is hydrochemically distinct from cold groundwater having higher total dissolved solids (TDS) (>0.8 g/l) and Sr contents, but relatively low Ca, Mg and HCO(3) contents. Most shallow groundwater belongs to local flow systems which are subject to evaporation and mixing with irrigation returns. The groundwater residence times estimated by tritium and (14)C activities indicate that deep non-thermal groundwater (130-160 m) in the Daying region range from modern (post-1950s) in the piedmont area to more than 9.4 ka BP (Before Present) in the downriver area and imply that this water belong to an intermediate flow system. Thermal water in the two geothermal fields contains no detectable active (14)C, indicating long residence times (>50 ka), consistent with this water being part of a large regional flow system. The mean recharge elevation estimated by using the obtained relationship Altitude (m) = -23.8 x delta(2)H (parts per thousand) - 121.3, is 1980 and 1880 m for the Daying and Qicun geothermal fields, respectively. The annual infiltration rates in the Daying and Qicun geothermal fields can be estimated to be 9029 x 10(3) and 4107 x 10(3) m(3)/a, respectively. The variable (86)Sr/(87)Sr values in the thermal and non-thermal groundwater in the two fields reflect different lithologies encountered along the flow path(s) and possibly different extents of water-rock interaction. Based on the analysis of groundwater flow systems in the two geothermal fields, hydrogeochemical inverse modelling was performed to indicate the possible water-rock interaction processes that occur under different scenarios. Copyright (C) 2010 John Wiley & Sons, Ltd.
机译:根据水化学特征和同位素组成,提出了大中低温和奇村地热田的概念水文地质模型。这两个地热田位于中国山西省忻州盆地,其大尺度流型表现出相似性。地热水来自盆地的区域地下水流系统,其特征是Cl中心点为SO(4)-Na型。热水在水化学上不同于冷地下水,其总固形物(TDS)(> 0.8 g / l)和Sr含量较高,但Ca,Mg和HCO(3)含量相对较低。大多数浅层地下水属于局部流系统,该系统易蒸发并与灌溉水混合。用tri和(14)C活性估算的地下水停留时间表明,大营地区的深层非热地下水(130-160 m)范围从山前地区的现代(1950年代后)到9.4 ka BP以上(以前存在于下游区域,表示该水属于中间流系统。两个地热场中的热水中均未检测到活性(14)C,表明停留时间较长(> 50 ka),这与大型区域流系统的一部分相符。通过获得的关系式Altitude(m)= -23.8 x delta(2)H(千分之一)-121.3,估算的平均补给高度分别为Daying和Qicun地热田,分别为1980和1880 m。在Daying和Qicun地热田中的年渗透率可以分别估计为9029 x 10(3)和4107 x 10(3)m(3)/ a。在这两个区域中,热水和非热水地下水中的变量(86)Sr /(87)Sr值反映了沿流动路径遇到的不同岩性以及水-岩相互作用的程度。在对两个地热区地下水流系统进行分析的基础上,进行了水文地球化学反演,以表明在不同情况下可能发生的水-岩相互作用过程。版权所有(C)2010 John Wiley&Sons,Ltd.

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号