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基于数字地球平台的地质钻孔三维模拟与可视化
引用本文:朱良峰,李自成,朱仝,李明江.基于数字地球平台的地质钻孔三维模拟与可视化[J].岩土力学,2014,35(11):3310-3316.
作者姓名:朱良峰  李自成  朱仝  李明江
作者单位:1.华东师范大学 地理信息科学教育部重点实验室,上海 200241; 2.上海市闵行区环境监测站,上海 201100;3.安徽省送变电工程公司,合肥 230000
基金项目:国家自然科学基金(No.40902093);华东师大实验教学设备研制项目(No.64100010);GIS教育部重点实验室主任基金(No.KLGIS2014C02)。
摘    要:研究了地质钻孔信息的管理和可视化技术,提出了一种在数字地球平台中进行城市钻孔信息模拟和可视化的方法。该方法基于一个统一的钻孔数据库标准,首先将钻探点位信息和地层分层信息组织成具有不同细节层次的钻探点位模型、钻孔分层散点模型和钻孔管段模型,然后构建基于细节层次模型的海量钻孔信息多尺度表达机制,最后将这些模型加载到数字地球平台中进行可视化及查询、分析。在上海市的应用实例显示,该方法实现过程简单、自动性高,生成的模型易于在国际互联网上进行分发、集成与共享。该方法的应用将有助于地质工作者向其他科技人员以及社会公众展示、分发自己拥有的钻孔信息,为以钻孔数据为代表的城市地质信息的社会化服务奠定基础。

关 键 词:钻孔  数字地球  数据共享  三维可视化  细节层次模型  
收稿时间:2013-04-22

3D modeling and visualization of geological boreholes on digital earth platforms
ZHU Liang-feng,LI Zi-cheng,ZHU Tong,LI Ming-jiang.3D modeling and visualization of geological boreholes on digital earth platforms[J].Rock and Soil Mechanics,2014,35(11):3310-3316.
Authors:ZHU Liang-feng  LI Zi-cheng  ZHU Tong  LI Ming-jiang
Institution:1. Key Laboratory of GIS for Ministry of Education, East China Normal University, Shanghai 200241, China; 2. Minhang Environmental Monitoring Station, Shanghai 201100, China; 3. Anhui Electric Power Transformation Co., Ltd., Hefei 230000, China
Abstract:In order to represent and disseminate geological boreholes on digital earth platforms, we present an automatic method for the modeling and visualization of boreholes in urban areas. At first, several borehole models with different levels of detail, such as point placemarks, scatter dots and tube models, are created according to a standard form of borehole database. And then, a LOD-based multi-scale representation is constructed to visualize massive boreholes. Finally, borehole models are loaded into a digital earth platform for 3D visualization and spatial analysis. A concrete example of applying this method to create borehole models in Shanghai shows that the modeling process is simple, automatic and effective. In addition, borehole models generated from this method are well-suited to the dissemination, integration and visualization on the Internet. Therefore, the widespread future use of this method will help earth scientists share their borehole data more easily. This will make borehole information accessible to a broad user base, and may promote the development on the social service of geological information in urban areas.
Keywords:borehole  digital earth  data sharing  three-dimensional visualization  level of detail
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