期刊文献+

水文地球化学模拟技术在康定某高温地热井结垢研究中的应用 被引量:7

Applying Hydro-Geochemistry Simulating Technology to Study Scaling of the High-Temperature Geothermal Well in Kangding County
下载PDF
导出
摘要 结垢是地热流体开采过程中经常面临的重要问题之一。本文运用水文地球化学模拟技术,对康定某高温地热井结垢问题进行了分析研究。研究结果表明,该地热井在开采过程中随着地热流体温度、p H、压力、氧化还原环境等条件变化,发生严重的结垢现象,主要结垢物类型为碳酸盐类垢物,其次为金属铁类垢物,而硅酸盐类垢物和硫酸盐类垢物较少或没有,与实际相吻合。该方法可以通过水化学指标分析结垢物种类、结垢趋势,为地热资源合理开发利用提供理论依据。 Scaling is one of the important issues in the process of geothermal fluid extraction. The paper tries to usehydro-geochemistry simulating technology to study scaling of the high-temperature geothermal well in Kangding County.The results show that the geothermal well in Kangding County scales seriously as geothermal fluid temperature, pH,pressure and redox environment change in the mining process. The main type of deposition is carbonate, following bymetal Fe, and silicate or sulfate fouling is little or none. The simulation result is close to the practical case. The method canprovide theoretical basis for reasonable development and utilization of geothermal resource through analyzing the results ofdeposition types and scaling trend with water chemical indicators.
出处 《新能源进展》 2016年第2期111-117,共7页 Advances in New and Renewable Energy
关键词 结垢 高温地热流体 水文地球化学模拟 康定 scaling high-temperature geothermal fluid hydro-geochemistry simulation Kangding County
  • 相关文献

参考文献11

  • 1韦梅花. 四川省康定县地下热水结垢机理及趋势分析[D]. 北京: 中国地质大学(北京), 2012: 1-2.
  • 2韦梅华,田廷山,孙燕冬,李霞.四川省康定地区地热水结垢趋势分析[J].水文地质工程地质,2012,39(5):132-138. 被引量:14
  • 3王延欣,刘世良,边庆玉,鄢斌,刘学峰,刘金侠,王海燕,卜宪标.甘孜地热井结垢分析及防垢对策[J].新能源进展,2015,3(3):202-206. 被引量:19
  • 4云智汉,马致远,周鑫,孙彩霞.碳酸盐结垢对中低温地热流体回灌的影响——以咸阳地热田为例[J].地下水,2014,36(2):31-33. 被引量:4
  • 5SATMAN A, UGUR Z, ONUR M. The effect of calcitedeposition on geothermal well inflow performance[J].Geothermics, 1999, 28(3): 425-444.
  • 6FLORENT B, CHRISTELLE M, ELISABETH G, et al.Hydrochemical and isotopic characterisation of theBathonian and Bajocian coastal aquifer of the Caen area(northern France)[J]. Applied geochemistry, 2000, 15(6):791-805.
  • 7APPELO C A J, POSTMA D. Geochemistry, groundwaterand pollution[M]. Rotterdam: A. A. Balkema Publisher,2005.
  • 8MARIMUTHU S, REYNOIDS D A, LA SALLE C L G,et al. A field study of hydraulic, geochemical and stableisotope relationships in a coastal wetlands system[J].Journal of hydrology, 2005, 315(1/4): 93-116.
  • 9DELALANDE M, BERGONZINI L, GHERARDI F, etal. Fluid geochemistry of natural manifestations from theSouthern Poroto–Rungwe hydrothermal system(Tanzania): Preliminary conceptual model[J]. Journal ofvolcanology and geothermal research, 2011, 199(1/2):127-141.
  • 10丁小.压力和温度对三元复合驱中成垢的影响[J].内蒙古石油化工,2012,38(17):74-75. 被引量:5

二级参考文献43

  • 1周训.深层地热井腐蚀与堵塞原因的初步认识[J].地下水,2001,23(2):95-96. 被引量:4
  • 2杨东方,唐令龙.西藏地热井除垢[J].四川电力技术,1995,18(4):8-10. 被引量:6
  • 3陈新萍,高清河,杨世海.大庆外围低渗透油田结垢分析及解决措施[J].大庆师范学院学报,2005,25(4):1-2. 被引量:7
  • 4佟伟,章明陶.横断山区温泉志[M].北京:科学出版社,1994.
  • 5GB/T11615-2010,地热资源地质勘查规范[S].
  • 6Patzay G, Stahl G, Karman F H, et al. Modeling of scale formation and corrosion from geothermal water [J]. ElectrochimicaActa,1998, 43(1 -2) : 137- 147.
  • 7Ryznar J W. A new index calcium carbonate scale Washington D C : AWWA, for determining amount of formed by water [ M ]. 1944.
  • 8Larson T E, Sollo F R. Loss in water main carrying capacity[J]. AWWA,1967, 59(12) :1565-1572.
  • 9Langelier W F. Chemical equilibrium in water treatment[ M]. Washington D C: AWWA, 1946.
  • 10Riddick T M. The mechanism of corrosion of water pipes[J]. Water Work Sand Sewerage, 1944,91 : 133 - 138.

共引文献34

同被引文献37

引证文献7

二级引证文献29

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部