2016, 8(1): 38-42. doi: 10.16670/j.cnki.cn11-5823/tu.2016.01.06
Revit三维显示技术的开发及应用
上海大学土木工程系,上海 200072 |
Development and Application of Three-Dimensional Display Technology of Revit
Department of Civil Engineering, Shanghai University, Shanghai 200072, China |
引用本文: 贾盈平, 李春祥. Revit三维显示技术的开发及应用[J]. 土木建筑工程信息技术, 2016, 8(1): 38-42. doi: 10.16670/j.cnki.cn11-5823/tu.2016.01.06
Citation: Jia Yingping, Li Chunxiang. Development and Application of Three-Dimensional Display Technology of Revit[J]. Journal of Information Technologyin Civil Engineering and Architecture, 2016, 8(1): 38-42. doi: 10.16670/j.cnki.cn11-5823/tu.2016.01.06
摘要:建筑模型的可视化, 是数字化建模技术在各个专业之间信息交换与共享的重要途径, 直观、高效、准确的模型显示是项目顺利进行的有力保障。目前, Revit通过“剖面框”功能实现基于区域的模型三维显示, 但此功能受模型大小、硬件配置的制约, 在实际应用过程中, 还存在反复旋转模型视图、不断伸缩剖面框边界、重复操作、工作效率低下的问题。基于此基础, 论文分析了Revit模型可视化技术的应用要点, 假设出一种新的基于区域的三维模型显示功能, 并且结合Revit API开发技术, 实现了此功能的研发。最后介绍了研发的关键流程, 同时以一装配式钢结构为应用实例, 展示应用效果, 为推动BIM软件其他技术的发展提供参考。
Abstract: Visualization of building models is an important way for digital modeling technologies to realize information exchanges and sharing among different specialties, while direct, efficient and accurate model display is a powerful guarantee for the successful completion of the projects.At present, Revit realizes the 3D region model by the function of "section box".But this function is affected by the size of the model and the limit of the configura-tion.In practical application process.we need to rotate the model view and stretch the boundaries of the section box repeatedly, which is inefficient.Based on those, the key points of the application of Revit model visualization technology are analysed.Based on the development of RevitAPI technology, a new way of displaing 3D view which is based on the spatial location is proposed.Then the key technologies are introduceed and some application examples of an assembly type steel structure are demonstrated.This method provides a reference for the development of other technologies about BIM software.
[1] | |
[2] |
何清华, 钱丽丽, 段运峰等.BIM在国内外应用的现状及障碍研究[J].工程管理学报, 2011, 26(1):12-16. |
[3] |
Huang T, Kong C W, Guo H L, et a1.A virtual prototyp-ingsystem for simulating construction processes[J].Auto-mation in Construction, 2007, 16(5):576-585.doi: 10.1016/j.autcon.2006.09.007 |
[4] |
王立媛, 高路.基于BIM的项目级在线问题沟通平台开发与研究-乌鲁木齐高铁站项目[J].土木建筑工程信息技术, 2015, 7(4):104-107. |
[5] |
魏英洪.BIM技术中建筑工程可视化应用方法及价值探讨[J].铁道勘察, 2014, 01:17-19.doi: 10.3969/j.issn.1672-7479.2014.01.006 |
[6] |
苏骏, 叶红华.基于BIM的设计可视化技术在世博会德国馆中的应用[J].土木建筑工程信息术, 2009, 1(1):87-90. |
[7] |
刘火生, 张燕云, 杨振钦, 等.基于BIM技术的施工现场的可视化应用[J].施工技术, 2013, 42:507-508. |
[8] |
申志超, 王强强, 谢卫.CAD标准是规范勘察设计企业协同设计活动的基本准则[J].中国勘察设计, 2009, (6):48-52. |
[9] |
Howard R, Bjork B.Use of standards for CAD layers in buihting[J].Automation in Construction, 2007, 16(3): 290-297.doi: 10.1016/j.autcon.2006.06.001 |
[10] | |
[11] | |
[12] |
周成, 邓雪原.广域网建筑协同设计平台安全性与适用性研究[J].土木建筑工程信息技术, 2010, 2(2): 16-21. |
[13] |
高佐人, 吴炜煜.建筑设计协同系统模型研究与通用平台实现[J].计算机集成制造系统, 2003, CIMS (S1):112-117. |
[14] |
Autodesk Asia Pte Ltd, AUTODESK REVIT二次开发教程[M].上海:同济大学出版社, 2015:1-28. |
[15] |
Autodesk Authorized Author.Revit 2011 API Developer's Guide[M].American:Autodesk Authorized Publisher, 2010. |
计量
- PDF下载量(24)
- 文章访问量(2164)
- HTML全文浏览量(1258)