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Enhanced NURBS modeling and visualization for large 3D geoengineering applications: An example from the Jinping first-level hydropower engineering project, China

机译:大型3D地理工程应用增强的NURBS建模和可视化:中国锦床第一级水电工程项目示例

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摘要

Large engineering projects with complex underlying geologic structures require 3D geological integration and analysis. Presented is an example of a large hydroelectric dam, highlighting the need for 3D visualization and modeling as a requirement for the engineering design and construction process. Due to the complex nature of these projects, geological analysis using 3D modeling is commonly necessary. In this paper we present an integrated 3D geological modeling methodology for the analysis of large amounts of exploration data, and subsequent geological interpretation based on the non-uniform rational B-spline (NURBS) technique, the triangulated irregular network (TIN) algorithm and boundary representation. The procedural details and application of the proposed approach are demonstrated with reference to an actual hydropower engineering project. The new approach offered a good scheme to solve the inconsistencies among storage, accuracy and operational speed of the model. A 3D model was developed and validated using testing data from the engineering project. Visual analysis of the 3D model helps engineers to comprehend the complexity of geological structures, and enables arbitrary cutting, rock-mass quality classification, and digital drilling. (c) 2005 Elsevier Ltd. All rights reserved.
机译:具有复杂地质结构的大型工程项目需要3D地质集成和分析。提出是大型水力电压的一个例子,突出了需要3D可视化和建模作为工程设计和施工过程的要求。由于这些项目的复杂性,通常需要使用3D建模的地质分析。本文介绍了一个集成的3D地质模型方法,用于分析大量的勘探数据,以及基于非均匀Rational B样条(NURBS)技术的后续地质解释,三角形的不规则网络(TIN)算法和边界表示。拟议方法的程序细节和应用是参考实际水电工程项目的说明。新方法提供了一个良好的计划,可以解决模型的存储,准确性和运营速度之间的不一致性。使用工程项目的测试数据开发并验证了3D模型。 3D模型的视觉分析有助于工程师理解地质结构的复杂性,并实现任意切割,岩质量质量分类和数字钻井。 (c)2005 Elsevier有限公司保留所有权利。

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