Open Access
Issue
E3S Web Conf.
Volume 136, 2019
2019 International Conference on Building Energy Conservation, Thermal Safety and Environmental Pollution Control (ICBTE 2019)
Article Number 04050
Number of page(s) 6
Section Urban Public Safety
DOI https://doi.org/10.1051/e3sconf/201913604050
Published online 10 December 2019
  1. H. R. Tavakoli and A. Rashidi Alashti, “Evaluation of progressive collapse potential of multi-story moment resisting steel frame buildings under lateral loading,” Scientia Iranica, 2013. [Google Scholar]
  2. I. Azim, J. Yang, S. Bhatta, F. Wang, and Q.-f. Liu, “Factors influencing the progressive collapse resistance of RC frame structures,” Journal of Building Engineering, p. 100986, 2019. [Google Scholar]
  3. D. D. Joshi, P. V. Patel, and S. J. Tank, “Linear and Nonlinear Static Analysis for Assessment of Progressive Potential of Multistoried Building,” presented at the Structures Congress, 2010. [Google Scholar]
  4. R. Jeyanthi and S. M. Kumar, “Progressive Collapse Analysis of a Multistorey using pushover analysis,” International Journal of Engineering Research & Technology, vol. 5, 2016. [Google Scholar]
  5. R. C and M. P. A. R, “Progressive Collapse Analysis of Reinforced Concrete Framed Structure,” International Journal of Civil and Structural Engineering Research, vol. 2, 2014. [Google Scholar]
  6. Y. Li, X. Lu, H. Guan, and P. Ren, “Numerical investigation of progressive collapse resistance of reinforced concrete frames subject to column removals from different stories,” Advances in Structural Engineering, vol. 19, pp. 314-326, 2016. [CrossRef] [Google Scholar]
  7. S. Sagiroglu and M. Sasani, “Progressive Collapse-Resisting Mechanisms of Reinforced Concrete Structures and Effects of Initial Damage Locations,” Journal of Structural Engineering, vol. 140, p. 04013073, 2014. [CrossRef] [Google Scholar]
  8. M.-H. Tsai and B.-H. Lin, “Investigation of progressive collapse resistance and inelastic response for an earthquake-resistant RC building subjected to column failure,” Engineering Structures, vol. 30, pp. 3619-3628, 2008. [Google Scholar]
  9. Y. Li, X. Lu, H. Guan, and L. Ye, “Progressive Collapse Resistance Demand of RC Frames under Catenary Mechanism,” ACI Structural Journal, vol. 111, 2014. [Google Scholar]
  10. G. Xu and B. R. Ellingwood, “An energy-based partial pushdown analysis procedure for assessment of disproportionate collapse potential,” Journal of Constructional Steel Research, vol. 67, pp. 547-555, 2011. [Google Scholar]
  11. C. a. S. Inc., “SAP2000 Version 20 analysis reference manual,” ed. [Google Scholar]
  12. G. S. A. (GSA), “Progressive collapse analysis and design guidelines for new federal office buildings and major modernization projects,” ed, 2003. [Google Scholar]
  13. ACI, “ACI 318-11 Building Code Requirements for Structural Concrete and Commentary,” ed, 2011. [Google Scholar]

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