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3D integrated modeling approach to geo-engineering objects of hydraulic and hydroelectric projects

机译:3D集成建模方法,用于水利水电项目的地质工程对象

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摘要

Aiming at 3D modeling and analyzing problems of hydraulic and hydroelectric engineering geology, a complete scheme of solution is presented. The first basis was NURBS-TIN-BRep hybrid data structure. Then, according to the classified thought of the object-oriented technique, the different 3D models of geological and engineering objects were realized based on the data structure, including terrain class, strata class, fault class, and limit class; and the modeling mechanism was alternative. Finally, the 3D integrated model was established by Boolean operations between 3D geological objects and engineering objects. On the basis of the 3D model, a series of applied analysis techniques of hydraulic and hydroelectric engineering geology were illustrated. They include the visual modeling of rock-mass quality classification, the arbitrary slicing analysis of the 3D model, the geological analysis of the dam, and underground engineering. They provide powerful theoretical principles and technical measures for analyzing the geological problems encountered in hydraulic and hydroelectric engineering under complex geological conditions.
机译:针对3D建模和水利水电工程地质问题,提出了完整的解决方案。第一个基础是NURBS-TIN-BRep混合数据结构。然后,根据面向对象技术的分类思想,基于数据结构,实现了地形类,地层类,断层类,极限类的不同3D地质工程对象模型。而建模机制是替代的。最后,通过在3D地质对象和工程对象之间进行布尔运算来建立3D集成模型。在3D模型的基础上,阐述了一系列水利水电工程地质应用分析技术。它们包括岩体质量分类的可视化建模,3D模型的任意切片分析,大坝的地质分析以及地下工程。它们为分析复杂地质条件下水利水电工程中遇到的地质问题提供了有力的理论原理和技术措施。

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