\شماره٪٪۱
Tavakoli H.R, Rashidi A. and Akbarpour S. ``effect of lateral
force resisting system on seismic performance of special steel
frames under progressive collapse'', {\it Sharif: Civil Enineering},
{\bf 31-2}, pp. 101-108 (in Persian) (2016).
\شماره٪٪۲
Tavakoli, H.R. and Kiakojouri F. ``Numerical study of progressive collapse in
framed structures: a new approach for dynamic column removal'',
{\it International
Journal of Engineering-Transactions A: Basics}, {\bf 26}, pp.685-692 (2013)
\شماره٪٪۳
Tavaloki H.R, Naghavi F. and Goltabar A.R. ``Effect of base isolation
systems on increasing the resistance of structures subjected
to progressive collapse'', {\it Earthquakes and Structures},
{\bf 9}(3), pp. 639-656 (2015).
\شماره٪٪۴
Tavakoli, H.R. and Moradi Afrapoli, M. ``Robustness analysis
of steel structures with various lateral load resisting systems
under seismic progressive collapse'', {\it Engineering Failure Analysis},
{\bf 83}, pp. 89-101 (2018).
\شماره٪٪۵
Bommer J.J. and Boore D.M. ``Engineering seismology encyclopaedia
of Geology'', New York, Academic Press (2004).
\شماره٪٪۶
Scawthorn, C. ``Fire Following Earthquakes'', New York, McGraw-Hill,
(1992).
\شماره٪٪۷
Elhami Khorasani, N., Garlock, M. and Quiel, S. ``Modeling
steel structures in OpenSees: Enhancements for fire and multi-hazard
probabilistic analyses'', {\it Computers and Structures}, {\bf 157}, pp.
218-231
(2015).
\شماره٪٪۸
Scawthorn, C., Eidinger, J.M. and Schiff, AJ. ``Fire following
earthquake. Technical council on lifeline earthquake engineering'',
Monograph No. 26. Reston: Published by the American Society of
Civil Engineers (2005).
\شماره٪٪۹
Scawthorn, C., Eidinger, J.M. and Schiff, A.J. ``Fire following
earthquake'', ASCE Publications, Reston, VA, (2005).
\شماره٪٪۱۰
Gui-rong, L., Yu-Pu, S. and Fu-Lai, Q. ``Post-fire cyclic
behavior of reinforced concrete shear walls'', {\it Journal of Central
South University, Technol}, {\bf 17}, pp. 1103-1108 (2010).
\شماره٪٪۱۱
Kamath, P., Kumar Sharma, U., Kumar, V. and et al.
``Full-scale fire test on an earthquake-damaged reinforced concrete
frame'', {\it Fire Safety Journal}, {\bf 73}, pp. 1-19 (2015).
\شماره٪٪۱۲
Ervine, A. ``Damaged reinforced concrete structures in
fire'', Edinburgh University, PhD Thesis, (2012).
\شماره٪٪۱۳
Jelinek, T., Zania, V. and Giuliani, L., ``Post-earthquake
fire resistance of steel buildings'', {\it Journal of Constructional
Steel Research}, {\bf 138}, pp. 774-782 (2017).
\شماره٪٪۱۴
Talebi, E., Korzen, M. and
Hotman, S.
``The performance of
concrete filled steel tube columns under post-earthquake fires'',
{\it Journal of Constructional Steel Research},
{\bf 150}, pp. 115-128 (2018).
\شماره٪٪۱۵
Suwondo, R., Cunningham, L. and Gilli, M. ``Improving
the performance of composite floors subjected to post-earthquake
fire'', {\it Fire Safety Journal}, {\bf 102}, pp. 18-26 (2018).
\شماره٪٪۱۶
Song, Q, Heidarpour, A. and
Zhao, X.
``Post-earthquake
fire behavior of welded steel I-beam to hollow column connections:
An experimental investigation'', {\it Thin-Walled Structures}, {\bf 98},
143-153 (2016).
\شماره٪٪۱۷
Lee, T.H. and Mosalam, K.M. ``Seismic demand sensitivity of reinforced
concrete shear-wall building using FOSM method'',
{\it Earthquake Engineering and
Structural Dynamics}, {\bf 34:14}, pp. 1719-1736 (2005).
\شماره٪٪۱۸
Dwaikat, M.B. and
Kodur, V.K.R. ``Fire induced spalling in high strength concrete
beams'', {\it Fire Technology}, {\bf 46}(1), pp. 251-274 (2010).
\شماره٪٪۱۹
Kodur, V.R. and Harmathy, T.Z., {\it Properties of Building Materials},
in SFPE Handbook of Fire Protection Engineering, P. J. DiNenno,
Ed., National Fire Protection Association, Quincy, Mass, USA,
(2008).
\شماره٪٪۲۰
Minson, A. ``Eurocode 2-3'', {\it Concrete Structures}, {\bf 40}(1), pp. 30-31
(2006).
\شماره٪٪۲۱
Youssef, M.A. and Moftah, M. ``General stress-strain relationship
for concrete at elevated temperatures'', {\it Engineering Structures},
{\bf 29}(10), pp. 2618-2634 (2007).
\شماره٪٪۲۲
Lie T. and Kodur, V.K.R., ``Thermal and mechanical properties
of steel-fibre-reinforced concrete at elevated temperatures,''
{\it Canadian Journal of Civil Engineering}, {\bf 23}(2), pp. 511-517
(1996).
\شماره٪٪۲۳
Remesh, K. and Tan, K.H. ``Performance comparison of zone
models with compartment fire tests'', {\it Journal of Fire Sciences},
{\bf 25}(4),
pp. 321-353 (2007).
\شماره٪٪۲۴
Kim, j., Park J.H. and Lee T.H. ``Sensitivity analysis of steel
buildings subjected to column loss'', {\it Engineering Structures},
{\bf 33}, pp. 421-432 (2011).
\شماره٪٪۲۵
Vamvatsikos, D. and Cornell, CA. ``Incremental dynamic analysis.
earthquake engineering and structural dynamics'', {\bf 31}(3), pp. 491-514
(2002).
\شماره٪٪۲۶
Choi, H., Sanada, Y. Kashiwa, H. and et al.
``Seismic response estimation method for earthquake-damaged
RC buildings'', {\it Earthquake Engineering} \& {\it Structural Dynamics},
{\bf 45}, pp. 99-1018 (2016).
\شماره٪٪۲۷
Imani, R., Mosqueda, G. and Bruneau, M. ``Experimental study
on post-earthquake fire resistance of ductile concrete-filled
double-skin tube columns'', {\it Journal of Structural Engineering},
{\bf 141}(8), pp.04014192
(2015)
\شماره٪٪۲۸
Guo, Q. and
Jeffers, A.E.
``Finite-element reliability analysis
of structures subjected to fire'', {\it Struct Engineering ASCE}, {\bf 49},
pp. 793-811 (2014).
\شماره٪٪۲۹
Iqbal, S. and
Harichandran, R.S.
``Capacity reduction and
fire load factors for LRFD of steel columns exposed to fire'',
{\it Fire Safty}, {\bf 46}, pp. 234-242 (2011).
\شماره٪٪۳۰
Parisi, F., Scalvenzi, M. and Brunesi, E. ``Performance limit
states for progressive collapse analysis of reinforced concrete
framed buildings'', {\it Structural Concrete}, pp. 1-17 (2018).