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利用GIS分析岩溶地区磷石膏渣场节理裂隙特征

Analyzes of Karst Areas Using GIS Phosphogypsum Jointed Residue Field Characteristics
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摘要 目前,GIS对多源地学信息进行综合分析,广泛应用于地质、环境等研究领域。通过分析我国岩土工程的现状和GIS在岩土工程中应用的情况,阐述GIS技术在岩溶地区渣场的应用状况,通过对磷石膏堆填体的位置形态、渣场的面积、体积、任意点磷石膏厚度等进行节理裂隙分析;根据节理裂隙分析结果进行三维建模,分析岩体结构面的空间形态、组合关系、分布和延展规律等。判断结构面发展趋势,从而分析地下水在结构面中的运动方向,判断磷石膏渣场在基岩中的流向,为治理地下水提供科学依据。 At present,GIS for multi-source geo-information to make a comprehensive analysis is widely used in geological and environmental research.Through the analysis of the current situation and GIS applications in geotechnical engineering,with a description of the GIS technology application in the Karst area,and the location of the landfill body shape,area,volume,the thickness of any point of phosphogypsum and so phosphogypsum jointed analysis;three-dimensional modeling based on the results of jointed analysis,analysis of rock mass structure of the space form of the relationship between composition,distribution and the extension of law and so on.Development trends to determine the structure surface,thereby to analyze the structure of the groundwater surface in the direction of movement to determine phosphogypsum slag field of flow in the bedrock,to provide scientific basis for groundwater management.
作者 汪志鹏 董寅 WANG Zhi-peng;DONG Yin(Geological Disaster Emergency Center of Jingdezhen,Jingdezhen 333000,Jiangxi,China)
出处 《水利科技与经济》 2021年第11期13-16,共4页 Water Conservancy Science and Technology and Economy
关键词 GIS 岩土工程 三维模型 地下水 GIS ground project three-dimensional model ground water
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  • 1[5]Jean Benoit,Pedro A de AIba,Ste phen M Sawyer.National geotechnical experimentation sits center data repository[A].David Frost J,Jean lou A Chameau.Proceedings of Geographic Information System and Their Application in Geotechnical Earthquake Engineering[C].Atlanta:American Society of Civil Engineers,1993.17-21. 被引量:1
  • 2马智民.地理信息系统的历史回顾与前景展望[J].地学工程进展,1997,14(1):59-63. 被引量:1
  • 3崔伟宏. 空间数据结构[M]. 北京: 中国科学技术出版社,1995:6~7. 被引量:1
  • 4Wadge G. The potential of GIS modelling of gravity flows and slope instabilities[J].International Journal of Geographical Information Systems, 1988, 2(2):143~152. 被引量:1
  • 5Gupta R P, Joshi B C. Landslide hazard zoning using the GIS approach; a case studyfrom the Ramganga Catchment, Himalayas[J]. Engineering Geology, 1990, 28(1~2):119~131. 被引量:1
  • 6MARIO MEJIA-NAvARRO, LUIS A, GARCIA. Natural Hazard and Risk Assessment UsingDecision Support System, Application: Glenwood Springs, Colorado[J].Environment andEngineering Geoscience, 1996, II(3): 299~324. 被引量:1
  • 7Mazzoccola D F, Hudson J A. A comprehensive method of mass characterization forindicating natural slope instability[J]. Quarterly Journal of Engineering Geology,1996,(29): 37~56. 被引量:1
  • 8FERRIER G.WADGE G. An integrated GIS and knowledge-based as an aid for thegeological analysis of sedimentary basins[J]. INT. J. Geographic Information Science,1997, 11(3): 281~297. 被引量:1
  • 9黄银孙.数字测图,数字制图与勘测设计一体化[J].科学技术通讯,1997(3):23-28. 被引量:6
  • 10王建华,陈佩佩,郑世书,孙亚军.遥感、GIS技术在煤矿地质灾害预测中的应用[J].遥感信息,1999,21(2):19-21. 被引量:10

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