آروین، محمود؛ زیاری، کرامتالله. (1397). سنجش میزان آسیبپذیری اجتماعی و تابآوری اجتماعی در برابر زلزله، فصلنامه امداد و نجات، دوره دهم، شماره 37، 21-46.
بدری، سیدعلی؛ طهماسبی، سیامک؛ هاجری، بهرام. (1400). رویکرد علمسنجی به مطالعات تابآوری بلاها در ایران، نشریه تحلیل فضایی مخاطرات محیطی، سال هشتم، شماره 3، 52-33.
مرادپور نبی، پور احمد احمد، حاتمی نژاد حسین، زیاری کرامت الله. (1400). فراتحلیلی بر پژوهش های چاپشده در حوزه تابآوری شهری در ایران. مدیریت شهری و روستایی، ۲۰ (۶۴) :۷-۲۴.
رفیعیان، مجتبی؛ رضایی، محمدرضا؛ عسگری، علی؛ پرهیزکار، اکبر؛ شایان، سیاوش. (1390). تبیین مفهومی تابآوری و شاخصسازی آن در مدیریت سوانح اجتماعی محور (CBDM)، فصلنامه برنامه ریزی و آمایش فضا، 15(4)، 19.
http://hsmsp.modares.ac.ir/article-21-9255-fa.html
عشقی چهاربرج، علی؛ نظمفر، حسین؛ غفاری، عطا. (1396). ارزیابی تابآوری کالبدی شهر در برابر زلزلههای احتمالی (منطقه یک شهرداری تهران)، نشریه برنامهریزی توسعه کالبدی، سال دوم، شماره 4، پیاپی 8، 11-26.
کمالی، ماندانا؛ طبیبیان، منوچهر؛ الهی، مسعود. (1400)، تحلیلی بر تابآوری کالبدی مساکن اجتماعی در برابر زلزله با استفاده از تکنیک موران (نمونه موردی، محله پونک زنجان)، فصلنامه دانش پیشگیری و مدیریت بحران، دوره 11، شماره سوم، 310-326.
http://dpmk.ir/article-1-435-fa.html
گرجی، مهشید؛ خادمالحسینی، احمد؛ اذانی، مهری؛ صابری، حمید. (1400)، تبیین تاب آوری کالبدی در بافت فرسودۀ شهری با بهره گیری از معادلات ساختاری PLS (نمونۀ موردی: محله های منطقۀ سه شهر اصفهان)، جغرافیا و توسعه، سال 19، شماره 64، 143-164.
https://doi.org/10.22111/j10.22111.2021.6369
لطفی، صدیقه؛ نیکپور، عامر؛ اکبری، فاطمه. (1399)، سنجش و ارزیابی ابعاد کالبدی تابآوری شهری در برابر زلزله (مطالعة موردی: منطقه 7 کلانشهر تهران)، فصلنامه علمی ـ پژوهشی نگرشهای نو در جغرافیای انسانی، سال 12، شماره 4، صص 19-37.
https://dorl.net/dor/20.1001.1.66972251.1399.12.4.2.0
مشکینی، ابوالفضل؛ قائدرحمتی، صفر؛ شعبانزادهنمینی، رضا. (1393). تحلیل آسیبپذیری بافت شهری در برابر زلزله (منطقه مورد مطالعه: منطقه دو شهرداری تهران). پژوهشهای جغرافیای انسانی, 46(4), 843-856.
https://doi.org/10.22059/jhgr.2015.51226
ملکی، سعید؛ امانپور، سعید؛ شجاعیان، علی؛ رضوی، معصومه. (1399). بررسی و سنجش میزان تابآوری در ابعاد کالبدی و اجتماعی در برابر زلزله (مطالعة موردی شهر ایذه)، مطالعات ساختار و کارکرد شهری، سال هفتم، شماره 22، صفحات 81-111.doi: 10.22080/usfs.2019.15917.1743.
Adler, C. E., Aldunce, P., Indvik, K., Alegría, D., Borquez, R., & Galaz, V. (2015). Resilience. Research handbook on climate governance.
https://doi.org/10.4337/9781783470600
Ainuddin, S., & Routray, J. K. (2012). Community resilience framework for an earthquake-prone area in Baluchistan. International Journal of Disaster Risk Reduction, 2, 25-36.
https://doi.org/10.1016/j.ijdrr.2012.07.003
Ajalli, M., Mozaffari, M. M., & Salahshori, R. (2019). Ranking the suppliers using a combined SWARA-FVIKOR approach. International journal of supply chain management, 8(1), 907-915.
http://excelingtech.co.uk/
Alawneh, S. M., & Rashid, M. (2022). Revisiting Urban Resilience: A Review on Resilience of Spatial Structure in Urban Refugee Neighborhoods Facing Demographic Changes. Frontiers in Sustainable Cities, 57.
https://doi.org/10.3389/frsc.2022.806531
Anelli, D., Tajani, F., & Ranieri, R. (2022). Urban resilience against natural disasters: Mapping the risk with an innovative indicators-based assessment approach. Journal of Cleaner Production, 371, 133496.
https://doi.org/10.1016/j.jclepro.2022.133496
Aslani, F., Hosseini, K. A., & Fallahi, A. (2020). A framework for earthquake resilience at the neighborhood level. International journal of disaster resilience in the built environment, 11(4), 557-575.
http://dx.doi.org/10.1108/IJDRBE-12-2019-0082
Assarkhaniki, Z., Rajabifard, A., & Sabri, S. (2020). The conceptualization of resilience dimensions and comprehensive quantification of the associated indicators: A systematic approach. International Journal of Disaster Risk Reduction, 51, 101840.
https://doi.org/10.1016/j.ijdrr.2020.101840
Basaglia, A., Aprile, A., Spacone, E., & Pelà, L. (2020). Assessing community resilience, housing recovery and impact of mitigation strategies at the urban scale: a case study after the 2012 Northern Italy Earthquake. Bulletin of Earthquake Engineering, 18(13), 6039-6074.
https://doi.org/10.1007/s10518-020-00919-8
Bueno, S., Banuls, V. A., & Gallego, M. D. (2021). Is urban resilience a phenomenon on the rise? A systematic literature review for the years 2019 and 2020 using textometry. International Journal of Disaster Risk Reduction, 66, 102588.
http://dx.doi.org/10.1016/j.ijdrr.2021.102588
Cerѐ, G., Rezgui, Y., & Zhao, W. (2017). Critical review of existing built environment resilience frameworks: directions for future research. International journal of disaster risk reduction, 25, 173-189.
https://doi.org/10.1016/j.ijdrr.2017.09.018
Cutter, S. L., Barnes, L., Berry, M., Burton, C., Evans, E., Tate, E., & Webb, J. (2010). A place-based model for understanding community resilience to natural disasters. Global environmental change, 18(4), 598-606.
https://doi.org/10.1016/j.gloenvcha.2008.07.013
Dehghani, A., Alidadi, M., & Sharifi, A. (2022). Compact Development Policy and Urban Resilience: A Critical Review. Sustainability, 14(19), 11798.
https://doi.org/10.3390/su141911798
Epstein, K., DiCarlo, J., Marsh, R., Adhikari, B., Paudel, D., Ray, I., & Måren, I. E. (2018). Recovery and Adaptation after the 2015 earthquakes; A smallholder farmer perspective. Ecology and Society, 23(1).
https://www.jstor.org/stable/26799051
Fasihi, H., & Kamran Dastjerdi, H. (2022). Historical Urban Fabric in the Face of Hazards (a Case Study of Ferdowsi Neighborhood in Tehran, Iran). Available at SSRN:
http://dx.doi.org/10.2139/ssrn.4108984
Haghighi Fard, S. M., & Doratli, N. (2022). Evaluation of Resilience in Historic Urban Areas by Combining Multi-Criteria Decision-Making System and GIS, with Sustainability and Regeneration Approach: The Case Study of Tehran (IRAN). Sustainability, 14(5), 2495.
https://doi.org/10.3390/su14052495
Hashemkhani Zolfani, S., Yazdani, M., & Zavadskas, E. K. (2018). An extended stepwise weight assessment ratio analysis (SWARA) method for improving the criteria prioritization process. Soft Computing, 22, 7399-7405.
https://doi.org/10.1007/s00500-018-3092-2
Hayat, K., JianJun, Z., Ali, S., & Khan, M. A. (2023). Exploring factors of the sustainable supply chain in the post-COVID-19 pandemic: SWARA approach. Environmental Science and Pollution Research, 1-19.
https://doi.org/10.1007/s11356-021-16908-6
Hofmann, S. Z. (2022). Build Back Better and Long-Term Housing Recovery: Assessing Community Housing Resilience and the Role of Insurance Post Disaster. Sustainability, 14(9), 5623.
https://doi.org/10.3390/su14095623
Hung, H. C., Yang, C. Y., Chien, C. Y., & Liu, Y. C. (2016). Building resilience: Mainstreaming community participation into an integrated assessment of resilience to climatic hazards in metropolitan land use management. Land use policy, 50, 48-58.
https://doi.org/10.1016/j.landusepol.2015.08.029
Kamranzad, F., Memarian, H., & Zare, M. (2020). Earthquake risk assessment for Tehran, Iran. ISPRS International Journal of Geo-Information, 9(7), 430.
https://doi.org/10.3390/ijgi9070430
Keršuliene, V., Zavadskas, E. K., & Turskis, Z. (2010). Selection of rational dispute resolution method by applying new step‐wise weight assessment ratio analysis (SWARA). Journal of business economics and management, 11(2), 243-258.
https://doi.org/10.3846/jbem.2010.12
Kontokosta, C. E., & Malik, A. (2018). The Resilience to Emergencies and Disasters Index: Applying big data to benchmark and validate neighborhood resilience capacity. Sustainable cities and society, 36, 272-285.
https://doi.org/10.1016/j.scs.2017.10.025
Kurnio, H., Fekete, A., Naz, F., Norf, C., & Jüpner, R. (2021). Resilience learning and indigenous knowledge of earthquake risk in Indonesia. International Journal of Disaster Risk Reduction, 62, 102423.
https://doi.org/10.1016/j.ijdrr.2021.102423
Marshall, N. A., Tobin, R. C., Marshall, P. A., Gooch, M., & Hobday, A. J. (2013). Social vulnerability of marine resource users to extreme weather events. Ecosystems, 16(5), 797-809.
https://www.jstor.org/stable/23501440
McBean, G. A., & Henstra, D. (2003). Climate change, natural hazards and cities. Institute for Catastrophic Loss Reduction.
http://www.iclr.org/
Moradi, A., Nabi Bidhendi, G. R., & Safavi, Y. (2021). Effective environment indicators on improving the resilience of Mashhad neighborhoods. International Journal of Environmental Science and Technology, 18(8), 2441-2458.
http://dx.doi.org/10.1007/s13762-021-03377-0
Mostafaei, H., & Kabeyasawa, T. (2004). Investigation and analysis of damage to buildings during the 2003 Bam earthquake. Bulletin of Earthquake Research Institute, University of Tokyo, 79, 107-132.
https://www.semanticscholar.org
Parizi, S. M., Taleai, M., & Sharifi, A. (2021). Integrated methods to determine urban physical resilience characteristics and their interactions. Natural Hazards, 109(1), 725-754.
http://DOI:10.1007/s11069-021-04855-x
Scherzer, S., Lujala, P., & Rød, J. K. (2019). A community resilience index for Norway: An adaptation of the Baseline Resilience Indicators for Communities (BRIC). International Journal of Disaster Risk Reduction, 36, 101107.
http://dx.doi.org/10.1016/j.ijdrr.2019.101107
Sharifi, A., Roosta, M., & Javadpoor, M. (2021). Urban form resilience: A comparative analysis of traditional, semi-planned, and planned neighborhoods in Shiraz, Iran. Urban Science, 5(1), 18.
https://doi.org/10.3390/urbansci5010018
SHOJAEE, M., ZARE, M., AKASHEH, B., TAGHIZADEH, A. O., & DOROSTIAN, A. (2020). ANALYSIS OF PHYSICAL INDICES IN EARTHQUAKE RESILIENCE OF BABOL NEIGHBORHOODS, IRAN. GEOSABERES: Revista de Estudos Geoeducacionais, 11, 364-380.
https://doi.org/10.26895/geosaberes.v11i0.983
Sunarti, E., Gunawan, E., Widiyantoro, S., Marliyani, G. I., & Ida, R. (2021). Critical point on housing construction, resilience, and family subjective welfare after a disaster: Notes from the Lombok, Indonesia, earthquake sequence of July-August 2018. Geomatics, Natural Hazards and Risk, 12(1), 922-938.
https://doi.org/10.1080/19475705.2021.1910576
Tiernan, A., Drennan, L., Nalau, J., Onyango, E., Morrissey, L., & Mackey, B. (2019). A review of themes in disaster resilience literature and international practice since 2012. Policy design and practice, 2(1), 53-74.
https://doi.org/10.1080/25741292.2018.1507240
United Nations Office for Disaster Risk Reduction Terminology (2017).
www.undrr.org
Verrucci, E., Rossetto, T., Twigg, J., & Adams, B. J. (2012, September). Multi-disciplinary indicators for evaluating the seismic resilience of urban areas. In Proceedings of 15th World Conference Earthquake Engineering, Lisbon.
https://www.iitk.ac.in
Vlajic, J. (2017, July). Effective Usage of Redundancy and Flexibility in Resilient Supply Chains. In Proceedings of the 22nd International Symposium on Logistics (ISL 2017): Data Driven Supply Chains (pp. 450-458). Centre for Concurrent Enterprise, Nottingham University Business School.
https://pure.qub.ac.uk
Ying, Z., Hao, W., & An-qi, G. U. (2019). Earthquake engineering: From earthquake resistance, energy dissipation, and isolation, to resilience. 工程力学, 36(6), 1-12.
https://dx.doi.org/10.6052/j.issn.1000-4750.2018.07.ST09
Zafarani, H., Hajimohammadi, B., & Jalalalhosseini, S. M. (2019). Earthquake hazard in the Tehran region based on the characteristic earthquake model. Journal of Earthquake Engineering, 23(9), 1485-1511.
http://dx.doi.org/10.1080/13632469.2017.1387189
Zarghamfard, M., Meshkini, A., Pourahmad, A., & Murgante, B. (2019). The pathology of housing policies in Iran: a criterion-based analysis. International Journal of Housing Markets and Analysis.
http://dx.doi.org/10.1108/IJHMA-06-2019-0066
Zeng, X., Yu, Y., Yang, S., Lv, Y., & Sarker, M. N. I. (2022). Urban resilience for urban sustainability: Concepts, dimensions, and perspectives. Sustainability, 14(5), 2481.
https://doi.org/10.3390/su14052481
Zolfaghari, M. R., & Peyghaleh, E. (2016). Development of optimization-based probabilistic earthquake scenarios for the city of Tehran. Computers & Geosciences, 86, 129-145.