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首页> 外文期刊>Hydrogeology journal >Geochemical and isotopic evidence on the recharge and circulation of geothermal water in the Tangshan Geothermal System near Nanjing, China: implications for sustainable development
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Geochemical and isotopic evidence on the recharge and circulation of geothermal water in the Tangshan Geothermal System near Nanjing, China: implications for sustainable development

机译:南京附近唐山地热系统充电和流通地球化学和同位素证据:可持续发展的影响

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摘要

Geothermal resources are practical and competitive clean-energy alternatives to fossil fuels, and study on the recharge sources of geothermal water supports its sustainable exploitation. In order to provide evidence on the recharge source of water and circulation dynamics of the Tangshan Geothermal System (TGS) near Nanjing (China), a comprehensive investigation was carried out using multiple chemical and isotopic tracers (delta H-2, delta O-18, delta S-34, Sr-87/Sr-86, delta C-13, C-14 and H-3). The results confirm that a local (rather than regional) recharge source feeds the system from the exposed Cambrian and Ordovician carbonate rocks area on the upper part of Tangshan Mountain. The reservoir temperature up to 87 A degrees C, obtained using empirical as well as theoretical chemical geothermometers, requires a groundwater circulation depth of around 2.5 km. The temperature of the geothermal water is lowered during upwelling as a consequence of mixing with shallow cold water up to a 63% dilution. The corrected C-14 age shows that the geothermal water travels at a very slow pace (millennial scale) and has a low circulation rate, allowing sufficient time for the water to become heated in the system. This study has provided key information on the genesis of TGS and the results are instructive to the effective management of the geothermal resources. Further confirmation and even prediction associated with the sustainability of the system could be achieved through continuous monitoring and modeling of the responses of the karstic geothermal reservoir to hot-water mining.
机译:地热资源是化石燃料的实用且竞争力的清洁能替代品,并研究地热水的充电来源支持其可持续开发。为了提供有关南京(中国)附近唐山地热系统(TGS)唐山地热系统(TGS)的充电水源的证据,使用多种化学和同位素示踪剂进行全面调查(Delta H-2,Delta O-18 ,Delta S-34,SR-87 / SR-86,Delta C-13,C-14和H-3)。结果证实,本地(而不是区域)充值源从唐山山上部的暴露的寒武纪和奥陶语碳酸盐岩区域提供了系统。使用经验和理论化学地热测定仪获得的水库温度高达87℃,需要地下水循环深度约2.5公里。由于与浅冷水混合至63%稀释的后果,在上升期间,地热水的温度降低。校正的C-14年龄表明,地热水以非常缓慢的速度(千禧一级)行进,并且具有低循环速率,允许水在系统中加热水。本研究提供了有关TG的成因的关键信息,结果对地热资源的有效管理有影响力。通过连续监测和建模具有岩溶地热储层与热水开采的响应,可以实现与系统可持续性相关的进一步确认甚至预测。

著录项

  • 来源
    《Hydrogeology journal》 |2018年第5期|共15页
  • 作者单位

    Chinese Acad Sci Inst Geol &

    Geophys Key Lab Shale Gas &

    Geoengn Beijing 100029 Peoples R China;

    Chinese Acad Sci Inst Geol &

    Geophys Key Lab Shale Gas &

    Geoengn Beijing 100029 Peoples R China;

    Chinese Acad Sci Inst Geol &

    Geophys Key Lab Shale Gas &

    Geoengn Beijing 100029 Peoples R China;

    Chinese Acad Sci Inst Geol &

    Geophys Key Lab Shale Gas &

    Geoengn Beijing 100029 Peoples R China;

    Chinese Acad Sci Inst Geol &

    Geophys Key Lab Shale Gas &

    Geoengn Beijing 100029 Peoples R China;

    1st Geol Brigade Jiangsu Geol &

    Mineral Explorat Nanjing 210041 Jiangsu Peoples R China;

    1st Geol Brigade Jiangsu Geol &

    Mineral Explorat Nanjing 210041 Jiangsu Peoples R China;

    1st Geol Brigade Jiangsu Geol &

    Mineral Explorat Nanjing 210041 Jiangsu Peoples R China;

    1st Geol Brigade Jiangsu Geol &

    Mineral Explorat Nanjing 210041 Jiangsu Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水文地质学(地下水水文学);
  • 关键词

    Geothermal field; Hydrochemistry; Isotopes; Groundwater recharge; China;

    机译:地热场;水化学;同位素;地下水补给;中国;

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