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水化学及同位素技术在某铁路深埋岩溶隧道中的应用
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作者 刘昭 李晓 庞练 《铁道勘察》 2010年第5期34-39,共6页
在岩溶地区修建铁路隧道将会遇到很多的问题,其中最具特色的问题之一就是涌突水。基于区域内天然水化学及同位素特征,深入分析现场测试数据,地下水、雨水和地表水水化学组分,研究地下水的补给、径流及排泄条件;利用其高程效应计算补给高... 在岩溶地区修建铁路隧道将会遇到很多的问题,其中最具特色的问题之一就是涌突水。基于区域内天然水化学及同位素特征,深入分析现场测试数据,地下水、雨水和地表水水化学组分,研究地下水的补给、径流及排泄条件;利用其高程效应计算补给高程,圈定补给面积;并利用氯离子质量平衡计算降水平均入渗补给率。进而查明天然水间的水力联系,估算降水平均入渗补给率,利用降水入渗法概略预测隧道的正常涌水量。 展开更多
关键词 深埋岩溶隧道 涌突水 水化学及同位素
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A hydrochemical study of the Hammam Righa geothermal waters in north-central Algeria 被引量:1
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作者 Mohamed Belhai Yasuhiro Fujimitsu +2 位作者 Fatima Zohra Bouchareb-Haouchine Abdelhamid Haouchine Jun Nishijima 《Acta Geochimica》 EI CAS CSCD 2016年第3期271-287,共17页
This study focuses on the hydrochemical characteristics of 47 water samples collected from thermal and cold springs that emerge from the Hammam Righa geothermal field, located in north-central Algeria. The aquifer tha... This study focuses on the hydrochemical characteristics of 47 water samples collected from thermal and cold springs that emerge from the Hammam Righa geothermal field, located in north-central Algeria. The aquifer that feeds these springs is mainly situated in the deeply fractured Jurassic limestone and dolomite of the Zaccar Mount. Measured discharge temperatures of the cold waters range from 16.0 to 26.5 ℃ and the hot waters from 32.1 to 68.2 ℃. All waters exhibited a near-neutral pH of 6.0-7.6. The thermal waters had a high total dis- solved solids (TDS) content of up to 2527 mg/l, while the TDS for cold waters was 659.0-852.0 mg/l. Chemical analyses suggest that two main types of water exist: hot waters in the upflow area of the Ca-Na-SO4 type (Ham- mam Righa) and cold waters in the recharge zone of the Ca-Na-HCO3 type (Zaccar Mount). Reservoir tempera- tures were estimated using silica geothermometers and fluid/mineral equilibria at 78, 92, and 95℃ for HR4, HR2, and HRI, respectively. Stable isotopic analyses of the δ18O and δD composition of the waters suggest that the thermal waters of Hammam Righa are of meteoric origin. We conclude that meteoric recharge infiltrates through the fractured dolomitic limestones of the Zaccar Mount and is conductively heated at a depth of 2.1-2.2 km. The hotwaters then interact at depth with Triassic evaporites located in the hydrothermal conduit (fault), giving rise to the Ca-Na-SO4 water type. As they ascend to the surface, the thermal waters mix with shallower Mg-rich ground- water, resulting in waters that plot in the immature water field in the Na-K-Mg diagram. The mixing trend between cold groundwaters from the recharge zone area (Zaccar Mount) and hot waters in the upflow area (Hammam Righa) is apparent via a chloride-enthalpy diagram that shows a mixing ratio of 22.6 〈 R 〈 29.2 %. We summa- rize these results with a geothermal conceptual model of the Hammam Righa geothermal field. 展开更多
关键词 Thermal waters North-central Algeria Geochemistry GEOTHERMOMETRY Geothermal conceptualmodel Cold groundwaters
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