A Review on Numerical Analysis of RC Flat Slabs Exposed to Fire
This paper aims at presenting and discussing the numerical studies performed to estimate the mechanical and thermal behavior of RC flat slabs at elevated temperature and fire. The numerical analysis is carried out using finite element programs by developing models to simulate the performance of the...
Main Authors: | , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Tikrit University
2020-03-01
|
Series: | Tikrit Journal of Engineering Sciences |
Subjects: | |
Online Access: | http://tj-es.com/publications/vol27no1pa1/ |
id |
doaj-76d2fe421c304bc9808bffcddd133bd5 |
---|---|
record_format |
Article |
spelling |
doaj-76d2fe421c304bc9808bffcddd133bd52020-11-25T03:17:44ZengTikrit UniversityTikrit Journal of Engineering Sciences1813-162X2020-03-0127115https://doi.org/10.25130/tjes.27.1.01A Review on Numerical Analysis of RC Flat Slabs Exposed to FireHanadi F. Naji Nibras N. KhalidMutaz K. MedhlomThis paper aims at presenting and discussing the numerical studies performed to estimate the mechanical and thermal behavior of RC flat slabs at elevated temperature and fire. The numerical analysis is carried out using finite element programs by developing models to simulate the performance of the buildings subjected to fire. The mechanical and thermal properties of the materials obtained from the experimental work are involved in the modeling that the outcomes will be more realistic. Many parameters related to fire resistance of the flat slabs have been studied and the finite element analysis results reveal that the width and thickness of the slab, the temperature gradient, the fire direction, the exposure duration and the thermal restraint are important factors that influence the vertical deflection, bending moment and force membrane of the flat slabs exposed to fire. However, the validation of the models is verified by comparing their results to the available experimental date. The finite element modeling contributes in saving cost and time consumed by experiments.http://tj-es.com/publications/vol27no1pa1/finite element modelfire resistance |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Hanadi F. Naji Nibras N. Khalid Mutaz K. Medhlom |
spellingShingle |
Hanadi F. Naji Nibras N. Khalid Mutaz K. Medhlom A Review on Numerical Analysis of RC Flat Slabs Exposed to Fire Tikrit Journal of Engineering Sciences finite element model fire resistance |
author_facet |
Hanadi F. Naji Nibras N. Khalid Mutaz K. Medhlom |
author_sort |
Hanadi F. Naji |
title |
A Review on Numerical Analysis of RC Flat Slabs Exposed to Fire |
title_short |
A Review on Numerical Analysis of RC Flat Slabs Exposed to Fire |
title_full |
A Review on Numerical Analysis of RC Flat Slabs Exposed to Fire |
title_fullStr |
A Review on Numerical Analysis of RC Flat Slabs Exposed to Fire |
title_full_unstemmed |
A Review on Numerical Analysis of RC Flat Slabs Exposed to Fire |
title_sort |
review on numerical analysis of rc flat slabs exposed to fire |
publisher |
Tikrit University |
series |
Tikrit Journal of Engineering Sciences |
issn |
1813-162X |
publishDate |
2020-03-01 |
description |
This paper aims at presenting and discussing the numerical studies performed to estimate the mechanical and thermal behavior of RC flat slabs at elevated temperature and fire. The numerical analysis is carried out using finite element programs by developing models to simulate the performance of the buildings subjected to fire. The mechanical and thermal properties of the materials obtained from the experimental work are involved in the modeling that the outcomes will be more realistic. Many parameters related to fire resistance of the flat slabs have been studied and the finite element analysis results reveal that the width and thickness of the slab, the temperature gradient, the fire direction, the exposure duration and the thermal restraint are important factors that influence the vertical deflection, bending moment and force membrane of the flat slabs exposed to fire. However, the validation of the models is verified by comparing their results to the available experimental date. The finite element modeling contributes in saving cost and time consumed by experiments. |
topic |
finite element model fire resistance |
url |
http://tj-es.com/publications/vol27no1pa1/ |
work_keys_str_mv |
AT hanadifnaji areviewonnumericalanalysisofrcflatslabsexposedtofire AT nibrasnkhalid areviewonnumericalanalysisofrcflatslabsexposedtofire AT mutazkmedhlom areviewonnumericalanalysisofrcflatslabsexposedtofire AT hanadifnaji reviewonnumericalanalysisofrcflatslabsexposedtofire AT nibrasnkhalid reviewonnumericalanalysisofrcflatslabsexposedtofire AT mutazkmedhlom reviewonnumericalanalysisofrcflatslabsexposedtofire |
_version_ |
1724630246947291136 |