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三维地层可视化
相关语句
  3 d strata visualization
     STUDY ON GEOLOGICAL MODELING IN 3D STRATA VISUALIZATION
     三维地层可视化中地质建模研究
短句来源
  three dimensional stratum visual
     Principle, data structure, basic procedure of developing three dimensional stratum visual control by the combination of ActiveX with OpenGL is introduced, and the last effect is given.
     文章对利用ActiveX技术,结合OpenGL来开发三维地层可视化控件的原理,数据结构及基本步骤进行了详细地介绍,并给出了程序运行效果。
短句来源
  “三维地层可视化”译为未确定词的双语例句
     DESIGNING AND REALIZATION OF ACTIVEX VISUALIZING 3-D STRATUM BASED ON OPENGL
     基于OpenGL的三维地层可视化控件的设计与实现
短句来源
     Study of Three-Dimension Stratum Visuallization for the Colliery Area
     煤矿开采区域的三维地层可视化的研究
短句来源
     And the system has applied in Lu An mineral bureau , utilize VB and OpenGL to develop the visual system, has realized the following function: the three-dimensional stratum visual display of any angle, packing the stratum , line frame showing , subdivisions ,single layer showing . showing a stratum in a certain area ,etc.
     并以潞安矿务局张村煤矿为例,用VB和OpenGL开发了三维地层可视化系统,系统实现了三维地层的可视化的任意角度显示,以及地层的填充、线框显示、任意面剖分、单层显示和单独显示某一区域的地层等功能。
短句来源
     Because of the excellent identity of ActiveX, the constructed program can be used repeatedly, which provides a new advanced thought that functions of OpenGL are applied in computer three dimensional stratum visualization.
     由于ActiveX的优秀特性,构造的程序可以实现软件重用,这为OpenGL在计算机三维地层可视化方面的应用提供了一种更为先进的思路。
短句来源
     Thus,strata blocks could be plotted by Open GL and then,3D visual strata were realized.
     在此基础上通过OpenGL绘制地层块体,从而实现三维地层可视化
短句来源
  相似匹配句对
     Research on and application of 3D visualization modeling of stratum model
     地层模型三维可视化建模及应用
短句来源
     Research on Three-dimensional Stratum Model and Its Visual Technology
     三维地层模型及可视化技术研究
短句来源
     Modelling Three-Dimensions Stratum and Studing on Visualization Methods
     三维地层建模及可视化方法研究
短句来源
     Study of Three-Dimensional Stratum Visualization in Coal Mining
     煤矿开采地层三维可视化研究
短句来源
     3 Dimension Visualization for Geology-Constructed-Model
     地质构造的三维可视化
短句来源
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The strata are usually irregularly curved surfaces and can not be expressed mathematically. According to the features of strata and based on the ideas of digital elevation model (DEM),the method of multi-layer DEM is put forward,and the fitting function of strata surface is established. The result of the application shows that the approach here is practicable and effective in 3D stratum modeling. Some visual functions for real 3D strata are implemented,such as rotating,moving,zooming,layer displaying and dividing...

The strata are usually irregularly curved surfaces and can not be expressed mathematically. According to the features of strata and based on the ideas of digital elevation model (DEM),the method of multi-layer DEM is put forward,and the fitting function of strata surface is established. The result of the application shows that the approach here is practicable and effective in 3D stratum modeling. Some visual functions for real 3D strata are implemented,such as rotating,moving,zooming,layer displaying and dividing section freely.

地层通常是不规则的曲面且不能用数学表达式表达。根据地层的特点,借鉴数字高程的思想,提出了多层DEM的方法,并采用适当的地层面拟合函数,建立了真三维地层模型。实现了三维地层可视化的一些基本功能,例如旋转、放大、缩小、分层显示和任意切割剖面等。

This paper discusses a kind of method in which functions of OpenGL are applied in ActiveX. Because of the excellent identity of ActiveX, the constructed program can be used repeatedly, which provides a new advanced thought that functions of OpenGL are applied in computer three dimensional stratum visualization. Principle, data structure, basic procedure of developing three dimensional stratum visual control by the combination of ActiveX with OpenGL is introduced, and the last effect is given.

文章讨论了一种用ActiveX技术封装OpenGL函数的方法。由于ActiveX的优秀特性,构造的程序可以实现软件重用,这为OpenGL在计算机三维地层可视化方面的应用提供了一种更为先进的思路。文章对利用ActiveX技术,结合OpenGL来开发三维地层可视化控件的原理,数据结构及基本步骤进行了详细地介绍,并给出了程序运行效果。

Digitalization of underground engineering is part of the development strategy of digital earth,and it is also one of the main new developing fields in the research of underground engineering.This paper first examines the concept and research of the terms such as 3D GIS,digital stratum,3D strata visualization,and virtual reality of underground engineering.Then the concept of digitalization of underground engineering is clearly defined,that is,based on digital stratum and the technology of informatization,digitalization...

Digitalization of underground engineering is part of the development strategy of digital earth,and it is also one of the main new developing fields in the research of underground engineering.This paper first examines the concept and research of the terms such as 3D GIS,digital stratum,3D strata visualization,and virtual reality of underground engineering.Then the concept of digitalization of underground engineering is clearly defined,that is,based on digital stratum and the technology of informatization,digitalization of underground engineering provides an integrated and effective way for the data management of underground investigation,design,construction,monitoring etc.in the construction process,and an information sharing and analytical platform for the building,management,running,maintenance and disaster prevention of underground engineering.The objective of digitalization of underground engineering is to build a digital museum of underground engineering for all life cycle.According to the concept,a system architecture of digitalization of underground engineering is then put forward.The system architecture is comprised of five levels,which are data layer,modeling layer,representation layer,analysis layer and application layer,and functionality of each layer is also described.It is also proposed that the software development of each layer should be implemented by component technology.Finally,some preliminary application examples of digitalization of underground engineering are put forward,and some research trends in the future are discussed,too.

地下工程数字化是是数字地球发展战略的一部分,是当前地下工程研究中的一个重要研究方向。在总结三维GIS、数字地层、三维地层可视化、地下工程虚拟现实系统等相关概念及研究的基础上,给出地下工程数字化的明确定义,即地下工程数字化就是以数字地层为依托,以信息化手段对地下工程建设过程中的勘察、设计、施工、监测等数据进行集中高效地管理,为地下工程的建设、管理、运营、维护与防灾提供信息共享和分析平台,最终实现一个地下工程全生命周期的数字化博物馆。地下工程数字化平台的系统体系应当由数据层、建模层、表现层、分析层、应用层等5个层次组成,并且应当采用组件式的软件开发方法进行开发。最后给出地下工程数字化在实际工程中的初步应用实例,并对地下工程数字化的进一步研究和发展进行探讨。

 
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