研究区地质条件的复杂性与三维流线的视觉叠加性在一定程度降低了三维流线图的可读性。通过分析地下水流线的生成过程,将其分布控制归结为流线初始点的布置问题,在探讨地下水流场特征点的基础上,结合流线初始点局部布置方法,制定了流线初始点的整体布置原则。以内蒙古自治区鄂托克前旗上海庙矿区鹰骏一号井田为例,利用其水文地质资料对流线布置原则进行检验,获得的流线图清晰地描述了地下水运动规律且有效地揭示了地质特征点(天窗)对地下水径流的控制作用,证明了流线布置原则的合理性与有效性。
The complexity of geological conditions and the occlusion of 3D streamlines reduce the readability of the streamline charts. After discussing the constructing process of streamlines, we narrow down the problem to placement of initial particles. Considering the geological properties of groundwater flow and the local placement method, we propose the principle for global placement, which was checked based on the hydrogeological conditions of Yingjun No. 1 Mine of Shanghaimiao mining area in Etuokeqian Banner, Inner Mongolia. The obtained streamline charts clearly represent the groundwater flow and uncover the control action of a window. The results demonstrate the rationality and validity of the global principle and provide visual and scientific data for mine water research and management decision.
[1] Yidana S M. Groundwater flow modeling and particle tracking for chemical transport in the southern Voltaian aquifers[J]. Environmental Earth Sciences, 2011, 63(4): 709-721.
[2] Frind E O, Matanga G B. The dual formulation of flow for contaminant transport modeling 1. Review of theory and accuracy aspects[J]. Water Resources Research, 1985, 20(2): 159-169
[3] 武强, 徐华, 赵鹏, 等. 地下水渗流场可视化动态模拟与应用研究[J]. 系统仿真学报, 2009, 21(15): 4841-4844. Wu Qiang, Xu Hua, Zhao Peng, et al. Dynamic Simulation for groundwater seepage field and its application[J]. Journal of System Simulation, 2009, 21(15): 4841-4844.
[4] Dong Y, Xu H, Li G. Wellhead protection area delineation using multiple methods: A case study in Beijing[J]. Environmental Earth Sciences, 2013, 70(1): 481-488.
[5] 武强, 赵颖旺, 徐华, 等. 地下水流场三维流线可视化模拟与实现[J]. 中国煤炭地质, 2012, 24(1): 21-25. Wu Qiang, Zhao Yingwang, Xu Hua, et al. Simulation and visualization of the streamline for groundwater flow field[J]. Coal Geology of China, 2012, 24(1): 21-25.
[6] 吴晓莉, 史美萍, 贺汉根. 基于特征提取的三维流线分布算法[J]. 国防科技大学学报, 2008, 30(2): 102-106. Wu Xiaoli, Shi Meiping, He Hangen. Feature extracting based 3D streamline placement algorithm[J]. Journal of National University of Defense Technology, 2008, 30(2): 102-106.
[7] 鲁大营, 朱登明, 王兆其. 三维流场的流线提取算法[J]. 计算机辅助设计与图形学学报, 2015, 25(5): 666-673. Lu Daying, Zhu Dengming, Wang Zhaoqi. Streamline selection algorithm for three-dimensional flow fields[J]. Journal of Computer-Aided Design & Computer Graphics, 2015, 25(5): 666-673.
[8] 侯健, 王玉斗, 陈月明. 复杂边界条件下渗流场流线分布研究[J].计算力学学报, 2003, 20(6): 335-338, 345. Hou Jian, Wang Yudou, Chen Yueming. Seepage flow line distribution in complicated boundary conditions[J]. Chinese Journal of Computational Mechanics, 2003, 20(6): 335-338, 345.
[9] 杨建敏. 基于三维流线模拟的井间示踪剂解释方法研究[D]. 东营: 中国石油大学, 2008. Yang Jianmin. The research of 3D streamline-based simulation for well-to-well tracer interpretation method[D]. Dongying: China University of Petroleum, 2008.
[10] 李春行, 王磊. 内蒙古自治区鄂托克前旗上海庙矿区鹰骏一号井田煤炭勘探报告[R]. 银川: 宁夏矿产地质调查院, 2012. Li Chunhang, Wang Lei. Coal prospecting report for the Yingjun no. 1 mine of Shanghaimiao mining area in Etuokeqian banner Inner Mongolia [R]. Yinchuan: Ningxia Mineral Geology Investigation Institute, 2012.
[11] 武强. 内蒙古自治区鄂托克前旗上海庙矿区鹰骏一号井田水文地质条件评价及防治水技术的研究与应用[R]. 北京: 中国矿业大学(北京)水害防治与水资源研究所, 2013. Wu Q. Hydrogeological condition evaluation and research & application of the technology of water-disaster prevention and cure for the Yingjun No. 1 mine of Shanghaimiao mining area in Etuokeqian banner Inner Mongolia [R]. Beijing: Institute of Mine Water Disaster Preventing and Controlling & Water Resources, China University of Mining & Technology (Beijing), 2013.