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Volume 42 Issue 10
Dec.  2014
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Liu Zhao-qiu, Li Yung-ui, Liu Hui-peng, Qi Hu. INFORMATION INTEGRATION AND COLLABORATIVE COMPUTATION FOR COMPLEX STRUCTURAL MODEL[J]. INDUSTRIAL CONSTRUCTION, 2012, 42(10): 175-179. doi: 10.13204/j.gyjz201210037
Citation: Liu Zhao-qiu, Li Yung-ui, Liu Hui-peng, Qi Hu. INFORMATION INTEGRATION AND COLLABORATIVE COMPUTATION FOR COMPLEX STRUCTURAL MODEL[J]. INDUSTRIAL CONSTRUCTION, 2012, 42(10): 175-179. doi: 10.13204/j.gyjz201210037

INFORMATION INTEGRATION AND COLLABORATIVE COMPUTATION FOR COMPLEX STRUCTURAL MODEL

doi: 10.13204/j.gyjz201210037
  • Received Date: 2012-05-21
  • Publish Date: 2012-10-20
  • When dealing with the complex structural model, the commercial finite element software is usually considered inefficient and can not be able to represent the engineering concepts well.According to BIM technology and its principles of information integration,as well as the data features of the complex structural model,a basic framework of the complex structural information model and its information integration process was built and analyzed respectively.Based on the collaborative computation concept of BIM technology and the representation format of IFC data model,a universal conversion platform was designed for the complex structural analysis model.Considering the features such as easy modeling and incorporating engineering concepts,the SATWE (a professional finite element analysis software focusing on tall-building with complex structural system) was selected to compare with ABAQUS (a commercial finite element analysis software) ,and a conversion program for structural analysis model between SATWE and ABAQUS was developed.Two projects in Shanghai including an international design center and a hotel expansion were used for the case study.The periods of four mode shapes of the conversion analysis model from SATWE to ABAQUS were calculated and compared with the test data,which show that the conversion program based on BIM technology can improve the modeling efficiency of complex structures of ABAQUS,and have the practicability and validity on the collaborative computation of the complex structures.
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