Utilization of numerical techniques to predict the thermal behavior of wood column subjected to fire. Part A: Using finite element methods to develop mathematical model for wood column
The mathematical model to predict the temperature history for wood column is needed in order to determine its fire resistance when exposed to fire. In this paper, an intelligent methodology called Finite Element Method (FEM) of performing analysis for the square and circular wood columns by virtuall...
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my.uniten.dspace-298222023-12-28T16:57:46Z Utilization of numerical techniques to predict the thermal behavior of wood column subjected to fire. Part A: Using finite element methods to develop mathematical model for wood column Elshayeb M. Rashid Ab Malik A. Ideris F. Hari Z. Ab Razak N. Siang J.E.L. Anuar Z. 12774261600 35325081200 7801415444 35324176800 57209372360 12774404900 54398200800 Finite Element Method Mathematical Modeling Temperature History Finite element method Fire resistance Mathematical models Thermodynamic properties Wooden construction Heat energy Mathematical Modeling Temperature History Columns (structural) The mathematical model to predict the temperature history for wood column is needed in order to determine its fire resistance when exposed to fire. In this paper, an intelligent methodology called Finite Element Method (FEM) of performing analysis for the square and circular wood columns by virtually or artificially developing a temperature history mathematical model. Numerical simulation model has been developed for the wood column by using two-dimensional mathematical model. The two-dimensional mathematical model was developed by using Galerkin's Weighted Residual technique. This model focuses on the regional material of the wood column for describing its thermal behavior. When the temperature history in a column and relevant materials properties are known, the strength of the column can be calculated at any time during fire. Therefore, the development of the temperature history mathematical model is a must before any further study to be carried out for the wood columns. The flow of convection will result in minimal increase in the rate of heat energy reaching the column core. The analysis shows that the temperature of the column increases with respect to the duration of exposure to fire. Final 2023-12-28T08:57:46Z 2023-12-28T08:57:46Z 2006 Conference paper 10.4028/0-87849-989-x.577 2-s2.0-33644852203 https://www.scopus.com/inward/record.uri?eid=2-s2.0-33644852203&doi=10.4028%2f0-87849-989-x.577&partnerID=40&md5=c0a8df0938223c5147296e870ea1a871 https://irepository.uniten.edu.my/handle/123456789/29822 306-308 I 577 582 Trans Tech Publications Ltd Scopus |
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Finite Element Method Mathematical Modeling Temperature History Finite element method Fire resistance Mathematical models Thermodynamic properties Wooden construction Heat energy Mathematical Modeling Temperature History Columns (structural) |
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Finite Element Method Mathematical Modeling Temperature History Finite element method Fire resistance Mathematical models Thermodynamic properties Wooden construction Heat energy Mathematical Modeling Temperature History Columns (structural) Elshayeb M. Rashid Ab Malik A. Ideris F. Hari Z. Ab Razak N. Siang J.E.L. Anuar Z. Utilization of numerical techniques to predict the thermal behavior of wood column subjected to fire. Part A: Using finite element methods to develop mathematical model for wood column |
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The mathematical model to predict the temperature history for wood column is needed in order to determine its fire resistance when exposed to fire. In this paper, an intelligent methodology called Finite Element Method (FEM) of performing analysis for the square and circular wood columns by virtually or artificially developing a temperature history mathematical model. Numerical simulation model has been developed for the wood column by using two-dimensional mathematical model. The two-dimensional mathematical model was developed by using Galerkin's Weighted Residual technique. This model focuses on the regional material of the wood column for describing its thermal behavior. When the temperature history in a column and relevant materials properties are known, the strength of the column can be calculated at any time during fire. Therefore, the development of the temperature history mathematical model is a must before any further study to be carried out for the wood columns. The flow of convection will result in minimal increase in the rate of heat energy reaching the column core. The analysis shows that the temperature of the column increases with respect to the duration of exposure to fire. |
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12774261600 |
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12774261600 Elshayeb M. Rashid Ab Malik A. Ideris F. Hari Z. Ab Razak N. Siang J.E.L. Anuar Z. |
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Conference paper |
author |
Elshayeb M. Rashid Ab Malik A. Ideris F. Hari Z. Ab Razak N. Siang J.E.L. Anuar Z. |
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Elshayeb M. |
title |
Utilization of numerical techniques to predict the thermal behavior of wood column subjected to fire. Part A: Using finite element methods to develop mathematical model for wood column |
title_short |
Utilization of numerical techniques to predict the thermal behavior of wood column subjected to fire. Part A: Using finite element methods to develop mathematical model for wood column |
title_full |
Utilization of numerical techniques to predict the thermal behavior of wood column subjected to fire. Part A: Using finite element methods to develop mathematical model for wood column |
title_fullStr |
Utilization of numerical techniques to predict the thermal behavior of wood column subjected to fire. Part A: Using finite element methods to develop mathematical model for wood column |
title_full_unstemmed |
Utilization of numerical techniques to predict the thermal behavior of wood column subjected to fire. Part A: Using finite element methods to develop mathematical model for wood column |
title_sort |
utilization of numerical techniques to predict the thermal behavior of wood column subjected to fire. part a: using finite element methods to develop mathematical model for wood column |
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Trans Tech Publications Ltd |
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2023 |
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1806423383676551168 |