Isoline analyzing is a fundamental and important part in visualization in scientific computing 等值线分析是科学计算可视化的一个基础而重要的研究内容。
Modeling of parallel visualization in scientific computing and its realization technologies in data parallel mode 科学计算可视化并行处理建模及其数据并行技术研究
In this thesis , the theory and method about visualization in scientific computing are introduced and described 分类阐述了医学三维图像重建的几种方法,分析了它们的差异和特点。
Visualization in scientific computing ( visc ) is a new subject put forward by developed countries at the end of 1980s 科学计算可视化是发达国家二十世纪八十年代后期提出并发展起来的一门新兴技术。
The technique of visualization in scientific computing paves a way to rebuild 3d terrain model using the interpreted result of gis data 科学计算可视化技术的发展为利用gis资料分析解释成果、重建地表三维模型创造了条件。
The visual data mining is made up of the technique of data mining and visualization , which is derived from visualization in scientific computing 数据挖掘可视化技术包括数据挖掘技术与可视化技术,它首先来自于科学计算可视化。
Visualization in scientific computing is the displine which studies how to transfer scientific data into visual and easy unstanding information 科学计算可视化是研究如何把科学数据,转换成可视的、能帮助科学家理解的信息的计算方法。
Visualization in scientific computing is a new research field that proposed and developing on later stage of the eighties of the 20th century 科学计算可视化( visualizationinsclentificcomputing )是20世纪80年代后期提出并发展起来的一个新的研究领域。
As the information age has come , the computer graph technology has also come into a new develop field . the visualization in scientific computing has been advanced 当今社会已进入了信息时代,计算机图示技术也进入了一个新的发展领域,提出了科学计算可视化的概念。
It was proved by lots of experiments and applications in this project that geologic 3d visualization in scientific computing based on com is feasible and promising 运行结果表明,用com组件技术建立地质科学信息可视化系统具有很好的软件独立性、再用性和很强的可维护性。