Citation: Gong Jiaqi, Hu Min, Yu Gang, Si Yongquan. Tunnel Defect Decision Analysis Using BIM Visualization. Journal of Information Technologyin Civil Engineering and Architecture, 2015, 7(6): 31-36. doi: 10.16670/j.cnki.cn11-5823/tu.2015.06.07
2015, 7(6): 31-36. doi: 10.16670/j.cnki.cn11-5823/tu.2015.06.07
Tunnel Defect Decision Analysis Using BIM Visualization
1. | Research Center of Building Industrialization, Department of Civil Engineering, Shanghai University, Shanghai 200072, China |
2. | Research Center of Building Industrialization, Sydney Institute of Languageand Commerce, Shanghai University, Shanghai 201800, China |
3. | Shanghai Tunnel EngineeringCO., LTD., Shanghai 2000232, China |
Transportation management staff not only need to develop a reasonable program of maintenance in the tunnel after the occurrence of defects, but also need to analyze them in order to constantly improve the daily operation and maintenance plan. However, due to complex interactions and dependency of the tunnel components, , the difficulty of defect analysis increased. Building Information Model (BIM) can realize the integration of all information during the whole life cycle of buildings and thus can make this work come true. In this paper, we combine the tunnel monitoring and maintenance data with BIM data base, using the method of spatio-temporal data mining technology and high-dimensional space-time correlation to analyze the relationship between various components and defects. Finally, the paper evaluates the causes and risk levels and works out decision-making plan. All assets and monitoring information create user-defined visualization and interactive interface guides transportation management personnel to carry out tunnel maintenance with innovative thinking.
[1] |
National Building Information Model Standard Project Committee. Frequently Asked Questions About the National BIM Standard-United StatesTM[J]. |
[2] |
Isikdag U, Underwood J, Aouad G. An investigation into the applicability of building information models in geospatial environment in support of site selection and fire response management processes [J]. Advanced engineering informatics, 2008, 22(4): 504-519.doi: 10.1016/j.aei.2008.06.001 |
[3] |
Akcamete A, Akinci B, Liu X, et al. Methods and systems for linking building information models with building maintenance information: U.S. Patent Application 14/038, 598[P]. 2013-9-26. |
[4] |
M.A. Hassanain, T.M. Froese, D.J. Vanier, Development of a maintenance management model based on IAI standards, Artif. Intell. Eng. 15 (2) (2001) 177-193. |
[5] |
胡振中, 陈祥祥, 王亮, 余芳强, 王兴坡.基于BIM的机电设备智能管理系统[J].土木建筑工程信息技术, 2013, 5(1):17-21. |
[6] |
过俊, 张颖.基于BIM的建筑空间与设备运维管理系统研究[J].土木建筑工程信息技术, 2013, 5(3):41-49+62. |
[7] |
A. Akcamete, B. Akinci, J.H. Garrett, Potential utilization of building information models for planning maintenance activities, Proceedings of the International Conference in Computing in Civil and Building Engineering, Nottingham University Press, Nottingham, UK, 2010. |
[8] |
A. Hammad, A. Motamedi, Framework for lifecycle status tracking and visualization of constructed facility components, Proceeding of the 7th International Conference on Construction Applications for Virtual Reality, Penn State University, 2007, pp. 224-232. |
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