首页|基于机器视觉技术的三维地质断层信息空间形态可视化系统设计

基于机器视觉技术的三维地质断层信息空间形态可视化系统设计

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设计基于机器视觉技术的三维地质断层信息空间形态可视化系统,提升可视化效果.以数字地质图、综合地质剖面、钻孔数据与遥感影像为数据源;数据采集层利用数据采集模块,在数据源内采集并处理地质断层相关数据;开发层中地质断层三维建模模块,利用克里金插值法,插值地质断层数据,生成地质断层曲面网格,建立地质断层三维模型;表示层中三维可视化模块,利用OpenGL技术,呈现地质断层三维模型,实现三维地质断层信息空间形态的可视化.实验证明:该系统可有效插值地质断层数据,构建地质断层三维模型;该系统可有效以可视化的形式,呈现三维地质断层信息的空间形态,信息熵达到0.7,可视化细节程度较高.
Design of 3D geological fault information spatial form visualization system based on machine vision technology
Design a 3D geological fault information spatial form visualization system based on machine vision technology to im-prove the visualization effect.The data source is digital geological map,integrated geological section,borehole data and remote sens-ing image.The data acquisition layer uses the data acquisition module to collect and process the geological fault related data in the da-ta source.The geological fault 3D modeling module is developed,the geological fault data is interpolated by Kriegin interpolation method,the surface grid of geological fault is generated,and the geological fault 3D model is established.The 3D visualization mod-ule in the representation layer uses OpenGL technology to present the 3D geological fault model and realize the visualization of the spa-tial form of 3D geological fault information.Experimental results show that the system can effectively interpolate geological fault data and construct a three-dimensional model of geological fault.This system can effectively present the spatial form of three-dimensional geological fault information in a visualized form,with an information entropy of 0.7 and a high degree of visualization detail.

machine vision technologythree-dimensional geologyfault informationspatial formvisualization systemkrig-ing interpolation

魏鸣、王旭辉、张红娥

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河南省地质科学研究所有限公司,郑州 450001

河南省地质研究院,郑州 450016

机器视觉技术 三维地质 断层信息 空间形态 可视化系统 克里金插值法

河南省自然科学基金

182300410106

2024

自动化与仪器仪表
重庆工业自动化仪表研究所,重庆市自动化与仪器仪表学会

自动化与仪器仪表

CSTPCD
影响因子:0.327
ISSN:1001-9227
年,卷(期):2024.(4)
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