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  • 李翠平, 李仲學, 曹志國, 李鑫. 地下礦復合場的一體化構模及三維可視化[J]. 工程科學學報, 2012, 34(7): 744-749. DOI: 10.13374/j.issn1001-053x.2012.07.007
    引用本文: 李翠平, 李仲學, 曹志國, 李鑫. 地下礦復合場的一體化構模及三維可視化[J]. 工程科學學報, 2012, 34(7): 744-749. DOI: 10.13374/j.issn1001-053x.2012.07.007
    LI Cui-ping, LI Zhong-xue, CAO Zhi-guo, LI Xin. Holistic modeling and three-dimensional visualization of complex fields for underground mines[J]. Chinese Journal of Engineering, 2012, 34(7): 744-749. DOI: 10.13374/j.issn1001-053x.2012.07.007
    Citation: LI Cui-ping, LI Zhong-xue, CAO Zhi-guo, LI Xin. Holistic modeling and three-dimensional visualization of complex fields for underground mines[J]. Chinese Journal of Engineering, 2012, 34(7): 744-749. DOI: 10.13374/j.issn1001-053x.2012.07.007

    地下礦復合場的一體化構模及三維可視化

    Holistic modeling and three-dimensional visualization of complex fields for underground mines

    • 摘要: 從礦山工程數字化及可視化的角度,將地下礦山看作是一包含多種幾何量、屬性量、參數量和狀態量的動態量場,稱之為地下礦復合場.通過分析各類空間場量的幾何特性、分布特性、矢量特性和時空順序特性,給出了各類空間場量及其相互關系的表征方法,進而提出了基于體素的一體化數字模型.經空間場量體素化、定量化、場量化及一體化處理,形成了地下礦復合場的一體化模型構建技術.以國內某典型礦山的實際數據為例,實現了地表地形、斷層和井巷工程等幾何特性、礦石品位的空間分布特性、井下通風系統的矢量特性的三維可視化仿真及火災蔓延的動態仿真,進而驗證了地下礦復合場一體化模型的可行性與有效性.

       

      Abstract: In terms of holistic digital modeling and three-dimensional (3D) visualization, an underground mine was treated as a dynamic field, named as the underground mine complex field, which includes various geometries, attributes, parameters, and states. By analyzing the geometric, distributive, directional, temporal and spatial characteristics of these field variables, this paper proposed a characterization method of these variables and their relations, and then built a holistic digital model of the complex field based voxelization. Specific techniques for building the holistic digital model were developed by voxelizing, quantifying, regionalizing, and integrating these field variables. A case study was used to implement the model and techniques. It is demonstrated that the holistic approach in the paper is effective for digital modeling and 3D visualization of the complex field, including geometric variables such as topography, faults and opennings, distributive variables such as ore grade, and directional variables such as air flows and mine fires.

       

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