1- Opricovic, S. (1998). Multicriteria optimization of civil engineering systems. Belgrade: Faculty of Civil Engineering.
2- Mohanty, P. P., & Mahapatra, S. S. (2014). A compromise solution by VIKOR method for ergonomically designed product with optimal set of design characteristics. Procedia Materials Science, 6, 633–640. https://doi.org/10.1016/j.mspro.2014.07.078
3- Liu, H.-C., You, J.-X., Fan, X.-J., & Chen, Y.-Z. (2014). Site selection in waste management by the VIKOR method using linguistic assessment. Applied Soft Computing, 21, 453–461. https://doi.org/10.1016/j.asoc.2014.04.024
4- Rezaie, K., Ramiyani, S. S., Nazari-Shirkouhi, S., & Badizadeh, A. (2014). Evaluating performance of Iranian cement firms using an integrated fuzzy AHP–VIKOR method. Applied Mathematical Modelling, 38(21–22), 5033–5046. https://doi.org/10.1016/j.apm.2014.03.023
5- Sayadi, M. K., Heydari, M., & Shahanaghi, K. (2009). Extension of VIKOR method for decision making problem with interval numbers. Applied Mathematical Modelling, 33(5), 2257–2262. https://doi.org/10.1016/j.apm.2008.06.010
6- Nakhaei, J., Bitarafan, M., & Lale Arefi, S. (2015). Choosing the best urban tunnels as safe space in crisis using AHP method: a case study in Iran. Journal of Architecture and Urbanism, 39(2), 149-160.
7- Nakhaei, J., Bitarafan, M., Lale Arefi, S., & Kapliński, O. (2016). Model for rapid assessment of vulnerability of office buildings to blast using SWARA and SMART methods (a case study of swiss re tower). Journal of Civil Engineering and Management, 22(6), 831-843.
8- Nakhaei, J., Forghani, S., Bitarafan, M., Lale Arefi, S., & Šaparauskas, J. (2015). Reinforcement of laminated glass facades against the blast load. Journal of Civil Engineering and Management, 21(8), 1085-1097.
9- Purirahim, A. A., Bitarafan, M., Arefi, S. L., & Setareh, A. A. (2012). Evaluation of Types of Buildings Entrances against Explosion. American Journal of Advanced Scientific Research (AJASR), 1(1).
10- Rahim, A. A. P., Bitarafan, M., & Arefi, S. L. (2013). Evaluation of types of shapes of building roof against explosion. International Journal of Engineering and Technology, 5(1), 1.
11- Hosseini, B., Bitarafan, M., Hosseini, B., & Hashemi-fesharak, J. (2013). Openings compatible with passive defense architecture by using Analytic hierarchy process (AHP). Journal of Architecture and Urban Planning, 6(11), 25-38.
12- Hosseini, S. B., Bitarafan, M., Hashemi-Fesharaki, S. J., & Norouzian-Maleki, S. (2012). The role of basic forms buildings in explosion protection. International Journal of Science and Advanced Technology, 2(8), 47-50.
13- Bitarafan, M., Hosseini, S. B., Javad hashemi-fesharaki, S., & Esmailzadeh, A. (2013). Role of architectural space in blast-resistant buildings. Frontiers of Architectural Research, 2(1), 67-73.
14- Bitarafan, M., Hosseini, S. B., Sabeti, N., & Bitarafan, A. (2016). The architectural evaluation of buildings’ indices in explosion crisis management. Alexandria Engineering Journal, 55(4), 3219-3228.
15- Bitarafan, M., Zolfani, S. H., Arefi, S. L., & Zavadskas, E. K. (2012). Evaluating the construction methods of cold-formed steel structures in reconstructing the areas damaged in natural crises, using the methods AHP and COPRAS-G. Archives of civil and mechanical engineering, 12(3), 360-367.