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An Approach to Computer Modeling of Geological Faults in 3D and an Application
作者姓名:ZHU  Liang-feng  HE  Zheng  PAN  Xin  WU  Xin-cai
作者单位:Key Laboratory of GISciences for Ministry of Education, East China Normal University, Shanghai 200062, China
基金项目:国家高技术研究发展计划(863计划);上海市自然科学基金
摘    要:3D geological modeling, one of the most important applications in geosciences of 3D GIS, forms the basis and is a prerequisite for visualized representation and analysis of 3D geological data. Computer modeling of geological faults in 3D is currently a topical research area. Structural modeling techniques of complex geological entities containing reverse faults are discussed and a series of approaches are proposed. The geological concepts involved in computer modeling and visualization of geological fault in 3D are explained, the type of data of geological faults based on geological exploration is analyzed, and a normative database format for geological faults is designed. Two kinds of modeling approaches for faults are compared: a modeling technique of faults based on stratum recovery and a modeling technique of faults based on interpolation in subareas. A novel approach, called the Unified Modeling Technique for stratum and fault, is presented to solve the puzzling problems of reverse faults, syn-sedimentary faults and faults terminated within geological models. A case study of a fault model of bed rock in the Beijing Olympic Green District is presented in order to show the practical result of this method. The principle and the process of computer modeling of geological faults in 3D are discussed and a series of applied technical proposals established. It strengthens our profound comprehension of geological phenomena and the modeling approach, and establishes the basic techniques of 3D geological modeling for practical applications in the field of geosciences.

关 键 词:地质结构  3D地质模型  地质断层  地球科学  地理信息系统
收稿时间:2006-02-28
修稿时间:2006-04-20

An Approach to Computer Modeling of Geological Faults in 3D and an Application
ZHU Liang-feng HE Zheng PAN Xin WU Xin-cai.An Approach to Computer Modeling of Geological Faults in 3D and an Application[J].Journal of China University of Mining and Technology,2006,16(4):461-465.
Authors:ZHU Liang-feng  HE Zheng  PAN Xin  WU Xin-cai
Affiliation:1. Geological Survey of Denmark and Greenland, GEUS, Højbjerg, Denmark;2. Aarhus Geophysics Aps, Aarhus C, Denmark
Abstract:3D geological modeling, one of the most important applications in geosciences of 3D GIS, forms the basis and is a prerequisite for visualized representation and analysis of 3D geological data. Computer modeling of geological faults in 3D is currently a topical research area. Structural modeling techniques of complex geological entities contain- ing reverse faults are discussed and a series of approaches are proposed. The geological concepts involved in computer modeling and visualization of geological fault in 3D are explained, the type of data of geological faults based on geo- logical exploration is analyzed, and a normative database format for geological faults is designed. Two kinds of model- ing approaches for faults are compared: a modeling technique of faults based on stratum recovery and a modeling tech- nique of faults based on interpolation in subareas. A novel approach, called the Unified Modeling Technique for stratum and fault, is presented to solve the puzzling problems of reverse faults, syn-sedimentary faults and faults terminated within geological models. A case study of a fault model of bed rock in the Beijing Olympic Green District is presented in order to show the practical result of this method. The principle and the process of computer modeling of geological faults in 3D are discussed and a series of applied technical proposals established. It strengthens our profound compre- hension of geological phenomena and the modeling approach, and establishes the basic techniques of 3D geological modeling for practical applications in the field of geosciences.
Keywords:3D geological modeling  geological faults  stratum  fault data  visualization  Beijing Olympic Green District
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