ISSN 2394-5125
 

Research Article 


COMPUTER MODELLING OF TALLSTEEL COMPOSITE STRUCTURES AGAINST WIND LOADS USING NEURAL NETWORK

Bhupinder Kaur Srao, DrHardeep Singh Rai, Kulwinder Singh Mann.

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  • Abstract
    CAD is a computer aided building modulation toolwhich is being used byarchitects, engineer and contractors (AEC) to create and view 2D and 3D models. There has been found a reasonable growth across interdisciplinary streams such as AEC industry. The world is experiencing a population growth day by day which leads to more demand for human facilities. The design of a civil engineering structure has to fulfil mainly three requirements: resilience, serviceable and safety to inhabitants[1]. To meet the above criteria an accurate analysis of wind load is required for the design and construction of structures. Tall buildings, high rise buildings, multi-storeyed buildings, long span, cable-stayed and suspension bridges are more vulnerable to wind load because of their height, shape and weight. Henceforth, the key issues for the designers is to make sure the stability and safety of the structures. In past, wind tunnel tests were being conducted and their results have being used by the engineers to understand the response of wind load on bridges before predicting the analysis and design[3]. Eventually, this type of research involved more time and cost as 6 to 8 weeks are required to carry out a distinctive wind tunnel test. In recent years, with the development of computer technology and advancement in technique has set up an approach of computer modelling, analysis and design of tall structures against wind loads.

    Key words: BIM, IFC, Neural Network, High rise Buildings, Bounding box


     
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    How to Cite this Article
    Pubmed Style

    Srao BK, Rai DS, Mann KS. COMPUTER MODELLING OF TALLSTEEL COMPOSITE STRUCTURES AGAINST WIND LOADS USING NEURAL NETWORK. JCR. 2020; 7(19): 1688-1695. doi:10.31838/jcr.07.19.207


    Web Style

    Srao BK, Rai DS, Mann KS. COMPUTER MODELLING OF TALLSTEEL COMPOSITE STRUCTURES AGAINST WIND LOADS USING NEURAL NETWORK. http://www.jcreview.com/?mno=108136 [Access: September 15, 2020]. doi:10.31838/jcr.07.19.207


    AMA (American Medical Association) Style

    Srao BK, Rai DS, Mann KS. COMPUTER MODELLING OF TALLSTEEL COMPOSITE STRUCTURES AGAINST WIND LOADS USING NEURAL NETWORK. JCR. 2020; 7(19): 1688-1695. doi:10.31838/jcr.07.19.207



    Vancouver/ICMJE Style

    Srao BK, Rai DS, Mann KS. COMPUTER MODELLING OF TALLSTEEL COMPOSITE STRUCTURES AGAINST WIND LOADS USING NEURAL NETWORK. JCR. (2020), [cited September 15, 2020]; 7(19): 1688-1695. doi:10.31838/jcr.07.19.207



    Harvard Style

    Srao, B. K., Rai, . D. S. & Mann, . K. S. (2020) COMPUTER MODELLING OF TALLSTEEL COMPOSITE STRUCTURES AGAINST WIND LOADS USING NEURAL NETWORK. JCR, 7 (19), 1688-1695. doi:10.31838/jcr.07.19.207



    Turabian Style

    Srao, Bhupinder Kaur, DrHardeep Singh Rai, and Kulwinder Singh Mann. 2020. COMPUTER MODELLING OF TALLSTEEL COMPOSITE STRUCTURES AGAINST WIND LOADS USING NEURAL NETWORK. Journal of Critical Reviews, 7 (19), 1688-1695. doi:10.31838/jcr.07.19.207



    Chicago Style

    Srao, Bhupinder Kaur, DrHardeep Singh Rai, and Kulwinder Singh Mann. "COMPUTER MODELLING OF TALLSTEEL COMPOSITE STRUCTURES AGAINST WIND LOADS USING NEURAL NETWORK." Journal of Critical Reviews 7 (2020), 1688-1695. doi:10.31838/jcr.07.19.207



    MLA (The Modern Language Association) Style

    Srao, Bhupinder Kaur, DrHardeep Singh Rai, and Kulwinder Singh Mann. "COMPUTER MODELLING OF TALLSTEEL COMPOSITE STRUCTURES AGAINST WIND LOADS USING NEURAL NETWORK." Journal of Critical Reviews 7.19 (2020), 1688-1695. Print. doi:10.31838/jcr.07.19.207



    APA (American Psychological Association) Style

    Srao, B. K., Rai, . D. S. & Mann, . K. S. (2020) COMPUTER MODELLING OF TALLSTEEL COMPOSITE STRUCTURES AGAINST WIND LOADS USING NEURAL NETWORK. Journal of Critical Reviews, 7 (19), 1688-1695. doi:10.31838/jcr.07.19.207