[1]Badri, M. A. (2001). A combined AHP–GP model for quality control systems.International Journal of Production Economics, 72(1), 27–40.https://doi.org/10.1016/S0925-5273(00)00077-3
[2]Barakat, M., & Hetherington, J. G. (1998). New architectural forms to reduce the effectsof blast waves and fragments on structures. In Structures Under Shock and Impact V(pp. 53–62). WIT Press.
[3]Bitarafan, M., & Amini Hosseini, K. (2023). Developing a model for assessing urbanresilience to aerial attacks. Safe City, 6(1), 116–142.
[4]Bitarafan, M., & Nemati, A. (2026). Constructed urban infrastructure safety predictionunder explosive effects. Structures, 84, 110928.
[5]Bitarafan, M., Abazarlou, S., & Zarei, G. (2025). Assessing urban resiliency againstterrorist attacks. Journal of Urban Studies on Space and Place, 9(34), 131–152.
[6]Bitarafan, M., Hosseini, K. A., & Zolfani, S. H. (2023a). Identification and assessment ofman-made threats to cities using integrated Grey BWM-Grey MARCOSmethod. Decision Making: Applications in Management and Engineering, 6(2), 581-599.
[7]Bitarafan, M., Hosseini, S. B., Hashemi-Fesharaki, S. J., & Esmailzadeh, A. (2013). Role ofarchitectural space in blast-resistant buildings. Frontiers of Architectural Research, 2(1), 67–73.
[8]Bitarafan, M., Hosseinzadeh, Y., Pichkah, F., & Lale Arefi, S. (2012). Finite element modelingand analysis of cold-formed steel frame shear walls. International Conference on CivilEngineering and Architecture.
[9]Bitarafan, Mahdi, Kambod Amini Hosseini, and Sarfaraz Hashemkhani Zolfani."Evaluating natural hazards in cities using a novel integrated MCDM approach (casestudy: Tehran city)." Mathematics 11.8 (2023b): 1936.
[10] Cronbach, L. J. (1951). Coefficient alpha and the internal structure of tests. Psychometrika,16(3), 297–334. https://doi.org/10.1007/BF02310555
[11] Dağdeviren, M., & Yüksel, I. (2008). Developing a fuzzy analytic hierarchy process (AHP)model for behavior-based safety management. Information Sciences, 178(6), 1717–1733.https://doi.org/10.1016/j.ins.2007.10.016
[12] Dassault Systèmes Simulia Corp. (2009). ABAQUS user’s manual. Dassault Systèmes.
[13] Federal Emergency Management Agency. (2003). Risk management series: Reference manual tomitigate potential terrorist attacks against buildings (FEMA 426). U.S. Department ofHomeland Security.
[14] Gebbeken, N., & Döge, T. (2010). Explosion protection—Architectural design, urban planningand landscape planning. International Journal of Protective Structures, 1(1), 1–24.
[15] Groat, L., & Wang, D. (2007). Architectural research methods (A. Eini-Far, Trans.). Universityof Tehran Press.
[16] Hasheminasab, H., Hashemkhani Zolfani, S., Bitarafan, M., Chatterjee, P., & Abhaji Ezabadi, A.(2019). The role of façade materials in blast-resistant buildings. Algorithms, 12(6), 119.
[17] Hosseini, S. B., Bitarafan, M., Hashemi-Fesharaki, S. J., & Norouzian-Maleki, S. (2012). Therole of basic building forms in explosion protection. International Journal of Science andAdvanced Technology, 2(8), 47–50.
[18] Hosseinie, B., Bitarafan, M., Hosseini, B., Hashemi, J., & Fesharak, S. J. (2014). Openingscompatible with passive defense architecture using AHP. Journal of Architecture and UrbanPlanning, 6(11), 25–38.19] Kheiraldin, A., Naderpour, H., & Hosseini-Vaez, S. R. (2007). The effect of architectural formon structural vulnerability. Proceedings of the First National Conference on Structure andArchitecture, Tehran, Iran.
[20] Koccaz, Z., Sutcu, F., & Torunbalci, N. (2008). Architectural and structural design for blast-resistant buildings. 14th World Conference on Earthquake Engineering, Beijing, China.
[21] Luccioni, B. M., Ambrosini, R. D., & Danesi, R. F. (2005). Failure of a reinforced concretebuilding under blast loads. WIT Transactions on Engineering Sciences, 49, 217–226.
[22] Mojtahed Pour, M. (2009). The influence of building shape on stress distribution under blastloading (Master’s thesis). Persian Gulf University, Iran.
[23] Nakhaei, J., Bitarafan, M., & Lale Arefi, S. (2015a). Choosing the best urban tunnels as safespaces in crisis using the AHP method. Journal of Architecture and Urbanism, 39(2), 149–160.
[24] Nakhaei, J., Forghani, S., Bitarafan, M., Lale Arefi, S., & Šaparauskas, J. (2015b).Reinforcement of laminated glass facades against blast load. Journal of Civil Engineering andManagement, 21(8), 1085–1097.
[25] Ngo, T., Mendis, P., Gupta, A., & Ramsay, J. (2007). Blast loading and blast effects onstructures: An overview. Electronic Journal of Structural Engineering, Special Issue, 76–91.
[26] Nunnally, J. C. (1978). Psychometric theory (2nd ed.). McGraw-Hill.
[27] Pourirahim, A. A., Bitarafan, M., & Lale Arefi, S. (2012). Evaluation of types of building roofshapes against explosion. International Conference on Civil Engineering and Architecture.
[28] Remennikov, A. M., & Rose, T. A. (2005). Modelling blast loads on buildings in complex urbanenvironments. International Journal of Impact Engineering, 31(8), 921–947.
[29] Saaty, T. L. (1980). The analytic hierarchy process. McGraw-Hill.
[30] Smith, P. D., & Hetherington, J. G. (1994). Blast and ballistic loading of structures. Butterworth-Heinemann.
[31] Zavadskas, E. K., Turskis, Z., & Kildienė, S. (2014). State-of-the-art surveys of overviews onMCDM/MADM methods. Technological and Economic Development of Economy, 20(1), 165–79.