Simulation studies of a bridge structure using finite element method and validation / Azim Majid and Abdul Hadi Omar
In this project, the simulation study of a bridge structure is done. The objective of this project is to analyse the nodal displacement, stresses in elements and reaction at supports when load is applied to the bridge. Mathematical calculation and modelling based on trusses is explained in detail be...
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Faculty of Mechanical Engineering
2003
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Online Access: | https://ir.uitm.edu.my/id/eprint/21212/1/PPd_AZIM%20MAJID%20EM%2003_5.pdf https://ir.uitm.edu.my/id/eprint/21212/ |
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my.uitm.ir.212122022-06-29T02:24:00Z https://ir.uitm.edu.my/id/eprint/21212/ Simulation studies of a bridge structure using finite element method and validation / Azim Majid and Abdul Hadi Omar Majid, Azim Omar, Abdul Hadi Finite element method TG Bridge engineering In this project, the simulation study of a bridge structure is done. The objective of this project is to analyse the nodal displacement, stresses in elements and reaction at supports when load is applied to the bridge. Mathematical calculation and modelling based on trusses is explained in detail before any analysis being done. TRUSS2.BAS program in Q-BASIC programming language is used to solve the problem. The result is also validated using calculation analysis. The result of this analysis is shown in the output data that consists have -x and -y axis nodal displacement after load is applied, stress of each element and reaction at supports. The model that we proposed and the results of the deflection can be visualized in PLOT 2D2.BAS and AUTO CAD R14 programme using the input and output data. Faculty of Mechanical Engineering 2003 Student Project NonPeerReviewed text en https://ir.uitm.edu.my/id/eprint/21212/1/PPd_AZIM%20MAJID%20EM%2003_5.pdf Simulation studies of a bridge structure using finite element method and validation / Azim Majid and Abdul Hadi Omar. (2003) [Student Project] (Unpublished) |
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Finite element method TG Bridge engineering Majid, Azim Omar, Abdul Hadi Simulation studies of a bridge structure using finite element method and validation / Azim Majid and Abdul Hadi Omar |
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In this project, the simulation study of a bridge structure is done. The objective of this project is to analyse the nodal displacement, stresses in elements and reaction at supports when load is applied to the bridge. Mathematical calculation and modelling based on trusses is explained in detail before any analysis being done. TRUSS2.BAS program in Q-BASIC programming language is used to solve the problem. The result is also validated using calculation analysis. The result of this analysis is shown in the output data that consists have -x and -y axis nodal displacement after load is applied, stress of each element and reaction at supports. The model that we proposed and the results of the deflection can be visualized in PLOT 2D2.BAS and AUTO CAD R14 programme using the input and output data. |
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Student Project |
author |
Majid, Azim Omar, Abdul Hadi |
author_facet |
Majid, Azim Omar, Abdul Hadi |
author_sort |
Majid, Azim |
title |
Simulation studies of a bridge structure using finite element method and validation / Azim Majid and Abdul Hadi Omar |
title_short |
Simulation studies of a bridge structure using finite element method and validation / Azim Majid and Abdul Hadi Omar |
title_full |
Simulation studies of a bridge structure using finite element method and validation / Azim Majid and Abdul Hadi Omar |
title_fullStr |
Simulation studies of a bridge structure using finite element method and validation / Azim Majid and Abdul Hadi Omar |
title_full_unstemmed |
Simulation studies of a bridge structure using finite element method and validation / Azim Majid and Abdul Hadi Omar |
title_sort |
simulation studies of a bridge structure using finite element method and validation / azim majid and abdul hadi omar |
publisher |
Faculty of Mechanical Engineering |
publishDate |
2003 |
url |
https://ir.uitm.edu.my/id/eprint/21212/1/PPd_AZIM%20MAJID%20EM%2003_5.pdf https://ir.uitm.edu.my/id/eprint/21212/ |
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13.244368 |