期刊文献+

复杂地质结构三维建模技术应用与研究 被引量:2

Application and Research on Three-Dimensional Modeling Technology of Complex Geological Structure
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摘要 复杂地质结构工程通常所采用的二维数据信息无法直观表达工程区的地形、地质情况,建立复杂地质结构的三维模型,可以形象、直观地了解工程地质条件的基础信息,回避或减少工程设计的风险,提高工程设计的效率与水平,降低工程投资成本,提高工程设计方案的准确性、科学性和前瞻性。以构建河口村水库的三维地质模型为例,探讨了复杂地质结构三维建模的方法。 The engineering with complex geological structure is usually based on two-dimensional information,which cannot intuitively express the terrain and the geologic conditions.However,creating a complex geological structure of three-dimensional model can help image and intuitively know engineering geological conditions of the basic information,avoid or reduce risk of engineering design,improve the efficiency and the level of the engineering design,reduce the cost,improve the accuracy,scientific and prospective of the engineering design.Taking the Hekoucun Reservoir project as an example,through building the three-dimensional geological model of Hekoucun Reservoir,the paper discusses on three-dimensional modeling method of complex geological structure.
出处 《人民黄河》 CAS 北大核心 2011年第8期141-142,145,共3页 Yellow River
基金 水利部"948"项目(200903)
关键词 复杂地质结构 三维建模 CATIA 河口村水库工程 complex geological structure three-dimensional model CATIA Hekoucun Reservoir
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参考文献5

  • 1唐大雄 刘佑荣 张文殊 等.工程岩土学[M].北京:地质出版社,1999.6-77.
  • 2王霄,刘会霞.CATIA逆向工程应用教程[M].北京:化学工业出版社,2006.
  • 3郑会春.河口村水库工程可研报告[R].郑州:黄河勘测规划设计有限公司,2007.
  • 4张萌.CATIA机械机构设计[M].北京:机械工业出版社,2006.
  • 5王致明,杨旭,平海涛.知识工程及专家系统[M].北京:化学工业出版社,2006.

共引文献60

同被引文献17

  • 1谢轶,苏小四,高淑琴.基于GMS支持下的大庆地下水库区水文地质结构可视化模型[J].吉林大学学报(地球科学版),2006,36(S1):51-54. 被引量:20
  • 2崔义文,张丽玲.长春市第四系三维地质结构模型的研究[J].吉林地质,2008,27(2):125-130. 被引量:3
  • 3陈锁忠,黄家柱,张金善.基于GIS的孔隙水文地质层三维空间离散方法[J].水科学进展,2004,15(5):634-639. 被引量:15
  • 4Last G V,Murray C J,Bush D A,et al.Standardization of borehole data to support vadose zone flow and transport modeling[J].Vadose Zone Journal.2007,6(4):906-912.
  • 5Sanford W.E.,Caine J.S.,Wilcox D.A.,McWreath H.C.,Nicholas J.R.,2006.Research opportunities in interdisciplinary ground-water science in the US Geological Survey[M].US Dept,of the Interior,US Geological Survey,2006.
  • 6Harp D.R.,Vesselinov V.V.,2012.Analysis of hydrogeological structure uncertainty by estimation of hydrogeological acceptance probability of geostatistical models[J].Advances in Water Resources.2012,36:64-74.
  • 7Khomsi S.,Echihi 0.,Slimani N.,Structural control on the deep hydrogeological and geothermal aquifers related to the fractured Campanian-Miocene reservoirs of north-eastern Tunisia foreland constrained by subsurface data[J].Comptes Rendus Geoscience.2012.344(3):247-265.
  • 8Wycisk P.,Hubert T.,Gossel W.,Neumann Ch.,High-resolution 3D spatial modelling of complex geological structures for an environmental risk assessment of abundant mining and industrial megasites[J].Computers & Geosciences 2009,35:165-182.
  • 9Zarroca M.,Bach J.,Linares R.,Pellicer X.M.,Electrical methods(VES and ERT)for identifying,mapping and monitoring different saline domains in a coastal plain region(Alt Empord&,Northern Spain)[J].Journal of Hyrdrology.409:407-422.
  • 10Ayenew T.,Demlie M.,Wohnlich S.,Hydrogeological framework and occurrence of groundwater in the Ethiopian aquifers[J].Journal of African Earth Sciences.2008.52; 97-113.

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