آذینی، کیومرث، قنبریموحد، رضوان، و رحیمیان، مهدی. (1402). بررسی اثرات سیل بر معیشت پایدار خانوارهای روستایی (مطالعه موردی دهستان آبستان، شهرستان خرم آباد). فصلنامه مطالعات جغرافیایی مناطق کوهستانی، 4(2)، 187-204. http://gsma.lu.ac.ir/article-1-518-fa.html
اکرمی مقدم، بهار، ایلخانی پور زینالی، رسول، و نیک مهر، سامان. (1403). پهنهبندی پتانسیل سیلگیری با استفاده از روش تحلیل سلسله مراتبی در استان کردستان. محیط زیست و مهندسی آب، 10(1)، 79-93. https://doi.org/10.22034/ewe.2023.388125.1850
امامی, کامران، کبارفرد، محمد، و کراری، زینب. (1389). بهینه سازی مدیریت سیلاب شهری با روشهای غیرسازهای مطالعه موردی سیستم هشدار سیل گلابدره دربند. اولین کنفرانس ملی مدیریت سیلابهای شهری. تهران، ایران.
امینا، زهرا، و حکمت زاده، علیاکبر. (1400). تخمین سیلاب برق آسا در حوضههای آبریز کوچک: مطالعه موردی حوضه آبریز دروازه قرآن شیراز. بیستمین کنفرانس هیدرولیک ایران، گرگان، ایران.
بهمنی، سجاد، و محمدی ده چشمه، مصطفی. (1402). مطالعه جامعه شناختی چالش مدیریت آبهای سطحی و تأثیر آن بر زندگی روزمره شهروندان اهوازی (مطالعه موردی: حادثه سیلاب شهری و بالازدگی فاضلاب در شهرهای اهواز و کارون سال ۱۳۹۸ تا ۱۴۰۰). فصلنامه توسعه اجتماعی، 18(1)، 227-250. https://doi.org/10.22055/qjsd.2023.41990.2734
پوراحمد، احمد، صادقی، علیرضا. (1402). ارزیابی مولفههای تابآوری محلات شهری در برابر سیلاب (مورد مطالعه: محلات واقع بر مسیر رودخانهها در مناطق 1، 2، 3، 5 و 22 شهرداری تهران). فصلنامه مطالعات جغرافیایی مناطق کوهستانی، 4(2)، 23-42. http://gsma.lu.ac.ir/article-1-485-fa.html
حسنی، محمدجواد. (1402). بررسی عوامل موثر در بروز سیل جهت مدیریت خسارات ناشی از آن در ناحیه گردشگری سیرچ. فصلنامه مدیریت شهری و مهندسی محیطزیست، 1(4)، 85-102. doi: 10.48306/jumee.2024.445725.1039
خاتونی، کوشا، هوشیاریپور، فرهاد، نوری، روحالله، و ملک محمدی، بهرام. (1402). مدلسازی و پهنهبندی دو بعدی سیلاب شهری در حوضه شمال شهر کرج با استفاده از HEC-RAS 2D. دو فصلنامه مهندسی آب، 11(1)، 99-110. https://sanad.iau.ir/fa/Article/1024540?FullText=FullText
درگاه الکترونیکی پایگاه خبری و تحلیلی انصاف، (1401)، https://ensafnews.com/ ، کد خبر، 360430، تاریخ بهروز رسانی، 4/5/1401.
درگاه الکترونیکی خبرگزاری ایسنا. (1398). گزارش خبری: رودخانه منتهی به دروازه قرآن لایروبی نشده بود، کوتاهی مسئولین شهرداری شیراز علیرغم هشدارها، https://www.isna.ir/news
درگاه الکترونیکی خبرگزاری خبر آنلاین، (1401)، سیلابهای مرگبار تهران پس از انقلاب؛ از ۳۰۰ کشته سیل تجریش تا سیلاب امامزاده داوود، https://www.khabaronline.ir/news/1656037
درگاه الکترونیکی خبرگزاری مهر. (1398). اخبار ایران و جهان، «پیگیری قضائی بررسی سهل انگاری سیل شیراز /رودخانه لایروبی نشده بود»، https://www.mehrnews.com/news
رضاییمقدم، محمد حسین، و رحیمپور، توحید. (1402). تهیۀ نقشۀ پتانسیل خطر وقوع سیل با استفاده از دو روش نسبت فراوانی و شاخص آماری (مطالعۀ موردی: حوضۀ آبریز آجیچای). مدیریت مخاطرات محیطی، 10(4)، 291-308. doi: 10.22059/jhsci.2024.369163.803
زیاری، کرامت اله، رجایی، سید عباس، و داراب خانی، رسول. (1402). الگوی مناسب مدیریت بحران سیلاب شهرایلام. فصلنامه توسعه پایدار محیط جغرافیایی، 5(9)، 72-89. doi: 10.48308/sdge.2023.230355.1114
طاهری، سیده محدثه، و مساعدی، ابوالفضل. (1402). مروری بر راهبردهای مدیریت ریسک سیل و چالش های قانونی و عملی. دو فصلنامه آب و توسعه پایدار، 10(3)، 35-50. https://doi.org/10.48308/sdge.2023.230355.1114
قهرمان، بیژن. (1382). بررسی جامع رگبار ۱۶ خرداد ۱۳۷۱ مشهد. دوفصلنامه تولید و فرآوری محصولات زراعی و باغی، 7(2)، 29-41. http://jcpp.iut.ac.ir/article-1-462-fa.html
محمدزاده هابیلی، جهانشیر، حسینی، زهرا، خلیلی، داور، هنر، تورج، زند پارسا، شاهرخ، و طالبنژاد، رضوان. (1398). تولید هیدروگراف سیلاب 5 فروردین دروازه قرآن شهر شیراز بر مبنای مدلسازی فیزیکی، هیدرولیکی و هیدرولوژیکی. هجدهمین کنفرانس هیدرولیک ایران، تهران، ایران.
محمدیاستادکلایه، امین، مساعدی، ابوالفضل، و علاقمند، سینا. (1386). بررسی اثرات سیل مرداد 1380 شرق گلستان بر مورفولوژی رودخانه مادرسو. علوم کشاورزی و منابع طبیعی، 14(ویژه نامه منابع طبیعی (ضمیمه))، 9-17.
Aerts, J. C., Botzen, W. J., Clarke, K. C., Cutter, S. L., Hall, J. W., Merz, B., Michel-Kerjan, E., Mysiak, J., Surminski, S., & Kunreuther, H. (2018). Integrating human behaviour dynamics into flood disaster risk assessment. Nature Climate Change, 8(3), 193-199. https://doi.org/10.1038/s41558-018-0085-1
Alexander, J., Barclay, J., Sušnik, J., Loughlin, S. C., Herd, R. A., Darnell, A., & Crosweller, S. (2010). Sediment-charged flash floods on Montserrat: the influence of synchronous tephra fall and varying extent of vegetation damage. Journal of Volcanology and Geothermal Research, 194(4), 127-138. https://doi.org/10.1016/j.jvolgeores.2010.05.002
APFM, A. (2008). Tool for Integrated Flood Management: Urban Flood Risk Management. World Meteorological Organization, Geneva, Switzerland.
Balica, S., Douben, N., & Wright, N. G. (2009). Flood vulnerability indices at varying spatial scales. Water science and Technology, 60(10), 2571-2580. https://doi.org/10.2166/wst.2009.183
Ballesteros-Cánovas, J. A., Rodríguez-Morata, C., Garófano-Gómez, V., Rubiales, J. M., Sánchez-Salguero, R., & Stoffel, M. (2015). Unravelling past flash flood activity in a forested mountain catchment of the Spanish Central System. Journal of Hydrology, 529, 468-479. https://doi.org/10.1016/j.jhydrol.2014.11.027
Bayas-Jiménez, L., Martínez-Solano, F. J., Iglesias-Rey, P. L., & Boano, F. (2022). Economic Analysis of Flood Risk Applied to the Rehabilitation of Drainage Networks. Water, 14(18), 2901. https://doi.org/10.3390/w14182901
Beringer, A. L., & Kaewsuk, J. (2018). Emerging livelihood vulnerabilities in an urbanizing and climate uncertain environment for the case of a secondary city in Thailand. Sustainability, 10(5), 1452. https://doi.org/10.3390/su10051452
Bermúdez, M., Farfán, J., Willems, P., & Cea, L. (2021). Assessing the effects of climate change on compound flooding in coastal river areas. Water resources research, 57(10), e2020WR029321. https://doi.org/10.1029/2020WR029321
Bin, L., Xu, K., Pan, H., Zhuang, Y., & Shen, R. (2023). Urban flood risk assessment characterizing the relationship among hazard, exposure, and vulnerability. Environmental Science and Pollution Research, 30(36), 86463-86477. https://link.springer.com/article/10.1007/s11356-023-28578-7
Blöschl, G., Gaál, L., Hall, J., Kiss, A., Komma, J., Nester, T., Parajka, J., Perdigão, R. A., Plavcová, L., & Rogger, M. (2015). Increasing river floods: fiction or reality? Wiley Interdisciplinary Reviews: Water, 2(4), 329-344. https://doi.org/10.1002/wat2.1079
Braun, B., & Aßheuer, T. (2011). Floods in megacity environments: vulnerability and coping strategies of slum dwellers in Dhaka/Bangladesh. Natural Hazards, 58 (2), 771-787. https://doi.org/10.1007/s11069-011-9752-5
Bruwier, M., Mustafa, A., Aliaga, D. G., Archambeau, P., Erpicum, S., Nishida, G., Zhang, X., Pirotton, M., Teller, J., & Dewals, B. (2018). Influence of urban pattern on inundation flow in floodplains of lowland rivers. Science of the Total Environment, 622, 446-458. https://doi.org/10.1016/j.scitotenv.2017.11.325
Burby, R. (2014). Land-use planning for flood hazard reduction: the United States experience. In Floods (pp. 6-18). Routledge. Washington, D.C., United States.
Chen, A. S., Leandro, J., & Djordjević, S. (2016). Modelling sewer discharge via displacement of manhole covers during flood events using 1D/2D SIPSON/P-DWave dual drainage simulations. Urban Water Journal, 13(8), 830-840. https://doi.org/10.1080/1573062X.2015.1041991
National Research Council. (2013). Levees and the National Flood Insurance Program: Improving Policies and Practices. Washington, DC: The National Academies Press. https://doi.org/10.17226/18309
D'Ayala, D., Wang, K., Yan, Y., Smith, H., Massam, A., Filipova, V., & Pereira, J. J. (2020). Flood vulnerability and risk assessment of urban traditional buildings in a heritage district of Kuala Lumpur, Malaysia. Natural Hazards and Earth System Sciences, 20(8), 2221-2241. https://doi.org/10.5194/nhess-20-2221-2020
Dao-yi, G., Jin-hong, Z., & Shao-wu, W. (2001). Flooding 1990s along the Yangtze River, has it concern of global warming? Journal of Geographical Sciences, 11(1), 43-52. https://doi.org/10.1007/BF02837375
Diakakis, M., Deligiannakis, G., Antoniadis, Z., Melaki, M., Katsetsiadou, N., Andreadakis, E., Spyrou, N., & Gogou, M. (2020). Proposal of a flash flood impact severity scale for the classification and mapping of flash flood impacts. Journal of Hydrology, 590, 125452. httsp://doi.org/10.1016/j.jhydrol.2020.125452
Du, S., Shi, P., Van Rompaey, A., & Wen, J. (2015). Quantifying the impact of impervious surface location on flood peak discharge in urban areas. Natural Hazards, 76(3), 1457-1471. httsp://doi.org/10.1007/s11069-014-1463-2
Dwarapureddi, B. K., Dash, S., Raj, A., Garika, N. S., Kumar, A., & Vara, S. (2022). Prevention of soil erosion and torrential floods. In Prevention and Management of Soil Erosion and Torrential Floods (pp. 92-111). IGI Global. https://doi.org/10.4018/978-1-7998-8459-0.ch005
Ellis, J. B., & Revitt, D. M. (2010). The management of urban surface water drainage in England and Wales. Water and Environment Journal, 24(1), 1-8. https://doi.org/10.1111/j.1747-6593.2009.00203.x
Fatemi, M. N., Okyere, S. A., Diko, S. K., Kita, M., Shimoda, M., & Matsubara, S. (2020). Physical vulnerability and local responses to flood damage in peri-urban areas of Dhaka, Bangladesh. Sustainability, 12(10), 3957. https://doi.org/10.3390/su12103957
Feng, B., Zhang, Y., & Bourke, R. (2021). Urbanization impacts on flood risks based on urban growth data and coupled flood models. Natural Hazards, 106 (1), 613-627. https://doi.org/10.1007/s11069-020-04480-0
Ferrarin, C., Tomasin, A., Bajo, M., Petrizzo, A., & Umgiesser, G. (2015). Tidal changes in a heavily modified coastal wetland. Continental Shelf Research, 101, 22-33. https://doi.org/10.1016/j.csr.2015.04.002
Gain, A. K., Mojtahed, V., Biscaro, C., Balbi, S., & Giupponi, C. (2015). An integrated approach of flood risk assessment in the eastern part of Dhaka City. Natural Hazards, 79 (3), 1499-1530. https://doi.org/10.1007/s11069-015-1911-7
Gheorghe, A. V. (2005). Integrated risk and vulnerability management assisted by decision support systems: Relevance and impact on governance (Vol. 8). Springer Science & Business Media, Dordrecht, Netherlands.
Gopinath, N., Aruneraj, J., & Ragul, V. (2022). IoT based model for flood warning system in waterfall. 2022 1st International Conference on Computational Science and Technology (ICCST). Chennai, India. https://doi.org/10.1109/ICCST55948.2022.10040286
Green, C. (2004). The evaluation of vulnerability to flooding. Disaster Prevention and Management: An International Journal, 13(4), 323-329. https://doi.org/10.1108/09653560410556546
Guo, K., Guan, M., & Yu, D. (2021). Urban surface water flood modelling – a comprehensive review of current models and future challenges, Hydrol. Earth Syst. Sci., 25, 2843–2860. https://doi.org/10.5194/hess-25-2843-2021
Haer, T., Husby, T. G., Botzen, W. W., & Aerts, J. C. (2019). The safe development paradox: An agent-based model for flood risk under climate change in the European Union. Global Environmental Change, 60 (2), 102009. https://doi.org/10.1016/j.gloenvcha.2019.102009
Hall, J. W., Sayers, P. B., & Dawson, R. J. (2005). National-scale assessment of current and future flood risk in England and Wales. Natural Hazards, 36 (1), 147-164. https://doi.org/10.1007/s11069-004-4546-7
Hu, X., Pant, R., Hall, J. W., Surminski, S., & Huang, J. (2019). Multi-scale assessment of the economic impacts of flooding: evidence from firm to macro-level analysis in the Chinese manufacturing sector. Sustainability, 11(7), 1933. https://doi.org/10.3390/su11071933
Jha, A. K., Bloch, R., & Lamond, J. (2012). Cities and flooding: a guide to integrated urban flood risk management for the 21st century. World Bank Publications, Washington, D.C., United States.
Karami, M., Abedi Koupai, J., & Gohari, S. A. (2024). Integration of SWAT, SDSM, AHP, and TOPSIS to detect flood-prone areas. Natural Hazards, 120 (7), 6307-6325. https://doi.org/10.1007/s11069-024-06483-7
Lee, Y., & Brody, S. D. (2018). Examining the impact of land use on flood losses in Seoul, Korea. Land use policy, 70(2), 500-509. https://doi.org/10.1016/j.landusepol.2017.11.019
Li, Z., Wu, Y., Li, J., Qi, P., Sun, J., & Sun, Y. (2023). Attribution Analysis of Runoff Variation in the Second Songhua River Based on the Non-Steady Budyko Framework. Water, 15(3), 451. https://doi.org/10.3390/w15030451
Liu, X., & Chen, H. (2019). Integrated assessment of ecological risk for multi-hazards in Guangdong province in southeastern China. Geomatics, Natural Hazards and Risk, 10(1), 2069-2093. https://doi.org/10.1080/19475705.2019.1680450
Mahanta, R., & Das, D. (2017). Flood induced vulnerability to poverty: evidence from Brahmaputra Valley, Assam, India. International journal of disaster risk reduction, 24, 451-461. https://doi.org/10.1016/j.ijdrr.2017.04.014
McElwee, P., Nghiem, T., Le, H., & Vu, H. (2017). Flood vulnerability among rural households in the Red River Delta of Vietnam: implications for future climate change risk and adaptation. Natural Hazards, 86, 465-492. https://doi.org/10.1007/s11069-016-2701-6
Mohanty, M. P., Mudgil, S., & Karmakar, S. (2020). Flood management in India: A focussed review on the current status and future challenges. International journal of disaster risk reduction, 49, 101660. https://doi.org/10.1016/j.ijdrr.2020.101660
Muzamil, S. A. H. B. S., Zainun, N. Y., Ajman, N. N., Sulaiman, N., Khahro, S. H., Rohani, M. M., Mohd, S. M. B., & Ahmad, H. (2022). Proposed framework for the flood disaster management cycle in Malaysia. Sustainability,14(7), 4088. https://doi.org/10.3390/su14074088
Nkwunonwo, U. C., Whitworth, M., & Baily, B. (2016). A review and critical analysis of the efforts towards urban flood risk management in the Lagos region of Nigeria. Natural Hazards and Earth System Sciences, 16(2), 349-369. https://doi.org/10.5194/nhess-16-349-2016
Ocampo-Martinez, C., Puig, V., Cembrano, G., & Quevedo, J. (2013). Application of predictive control strategies to the management of complex networks in the urban water cycle [applications of control]. IEEE Control Systems Magazine, 33(1), 15-41. https://doi.org/10.1109/MCS.2012.2225919
Osheen, & Singh, K.K. (2019). Rain garden—A solution to urban flooding: A review. Sustainable Engineering: Proceedings of EGRWSE 2018, 27-35. https://doi.org/10.1007/978-981-13-6717-5_4
Qie, X., Yuan, S., Chen, Z., Wang, D., Liu, D., Sun, M., Sun, Z., Srivastava, A., Zhang, H., & Lu, J. (2021). Understanding the dynamical-microphysical-electrical processes associated with severe thunderstorms over the Beijing metropolitan region. Science China Earth Sciences, 64, 10-26. https://doi.org/10.1007/s11430-020-9656-8
Quesada-Román, A. (2022). Flood risk index development at the municipal level in Costa Rica: A methodological framework. Environmental Science & Policy, 133, 98-106. https://doi.org/10.1016/j.envsci.2022.03.012
Rahman, M., Ningsheng, C., Mahmud, G., Islam, M., Pourghasemi, H., Ahmad, H., Habumugisha, J., Washakh, R., Alam, M., & Liu, E. (2021). Flooding and its relationship with land cover change, population growth, and road density. Geosci. Front, 12(6), 101224. https://doi.org/10.1016/j.gsf.2021.101224
Sado-Inamura, Y., & Fukushi, K. (2019). Empirical analysis of flood risk perception using historical data in Tokyo. Land use policy, 82, 13-29. https://doi.org/10.1016/j.landusepol.2018.11.031
Sampson, C. C., Smith, A. M., Bates, P. D., Neal, J. C., Alfieri, L., & Freer, J. E. (2015). A high‐resolution global flood hazard model. Water resources research, 51(9), 7358-7381. https://doi.org/10.1002/2015WR016954
Samu, R., & Kentel, A. S. (2018). An analysis of the flood management and mitigation measures in Zimbabwe for a sustainable future. International journal of disaster risk reduction, 31, 691-697. https://doi.org/10.1016/j.ijdrr.2018.07.013
Santos, P. P., Pereira, S., Zêzere, J. L., Tavares, A. O., Reis, E., Garcia, R. A., & Oliveira, S. C. (2020). A comprehensive approach to understanding flood risk drivers at the municipal level. Journal of environmental management, 260, 110127. https://doi.org/10.1016/j.jenvman.2020.110127
Sayers, P., Yuanyuan, L., Galloway, G., Penning-Rowsell, E., Fuxin, S., Kang, W., Yiwei, C., & Le Quesne, T. (2013). Flood risk management: A strategic approach. In: Asian Development Bank, GIWP, UNESCO and WWF-UK, Manila, Philippines.
Sertel, E., Imamoglu, M. Z., Cuceloglu, G., & Erturk, A. (2019). Impacts of land cover/use changes on hydrological processes in a rapidly urbanizing mid-latitude water supply catchment. Water, 11(5), 1075. https://doi.org/10.3390/w11051075
Singkran, N., & Kandasamy, J. (2016). Developing a strategic flood risk management framework for Bangkok, Thailand. Natural Hazards, 84, 933-957. https://doi.org/10.1007/s11069-016-2467-x
Smith, K. (2013). Environmental hazards: assessing risk and reducing disaster. Routledge, London, United Kingdom.
Tanoue, M., Taguchi, R., Nakata, S., Watanabe, S., Fujimori, S., & Hirabayashi, Y. (2020). Estimation of direct and indirect economic losses caused by a flood with long‐lasting inundation: application to the 2011 Thailand flood. Water resources research, 56(5), e2019WR026092. https://doi.org/10.1029/2019WR026092
Thaler, T., & Levin-Keitel, M. (2016). Multi-level stakeholder engagement in flood risk management—A question of roles and power: Lessons from England. Environmental Science & Policy, 55, 292-301. https://doi.org/10.1016/j.envsci.2015.04.007
Thieken, A. H., Bessel, T., Kienzler, S., Kreibich, H., Müller, M., Pisi, S., & Schröter, K. (2016). The flood of June 2013 in Germany: how much do we know about its impacts? Natural Hazards and Earth System Sciences, 16(6), 1519-1540. https://doi.org/10.5194/nhess-16-1519-2016
Thieken, A. H., Samprogna Mohor, G., Kreibich, H., & Müller, M. (2022). Compound inland flood events: different pathways, different impacts and different coping options. Natural Hazards and Earth System Sciences, 22(1), 165-185. https://doi.org/10.5194/nhess-22-165-2022
Tingsanchali, T. (2012). Urban flood disaster management. Procedia engineering, 32, 25-37. https://doi.org/10.1016/j.proeng.2012.01.1233
Tucci, C. (2008). Urban flood risk management: A tool for integrated flood management. Geneva, world meteorological organisation.
UNISDR, C. (2015). The human cost of natural disasters: A global perspective. Centre for Research on the Epidemiology of Disasters. UN Office for Disaster Risk Reduction.
Verlynde, N., Voltaire, L., & Chagnon, P. (2019). Exploring the link between flood risk perception and public support for funding on flood mitigation policies. Journal of Environmental Planning and Management, 62(13), 2330-2351. https://doi.org/10.1080/09640568.2018.1546676
Watson, R. T., Zinyowera, M. C., & Moss, R. H. (1996). Climate Change 1995: Impacts, adaptations and mitigation of climate change: scientific technical analyses. Published By: Cambridge University Press.
Webber, J., Fletcher, T., Cunningham, L., Fu, G., Butler, D., & Burns, M. (2020). Is green infrastructure a viable strategy for managing urban surface water flooding? Urban Water Journal, 17(7), 598-608. https://doi.org/10.1080/1573062X.2019.1700286
Wilby, R. L., & Keenan, R. (2012). Adapting to flood risk under climate change. Progress in physical geography, 36(3), 348-378. https://doi.org/10.1177/0309133312438908
Yang, J.-L., & Zhang, G.-L. (2011). Water infiltration in urban soils and its effects on the quantity and quality of runoff. Journal of soils and sediments, 11, 751-761. https://doi.org/10.1007/s11368-011-0356-1
Yang, L., Smith, J., Baeck, M. L., & Morin, E. (2019). Flash flooding in arid/semiarid regions: climatological analyses of flood-producing storms in central Arizona during the North American monsoon. Journal of Hydrometeorology, 20(7), 1449-1471. https://doi.org/10.1175/JHM-D-19-0016.1
Yang, Y., Sun, L., Li, R., Yin, J., & Yu, D. (2020). Linking a storm water management model to a novel two-dimensional model for urban pluvial flood modeling. International Journal of Disaster Risk Science, 11, 508-518. https://doi.org/10.1007/s13753-020-00278-7
Zarghami, S. A., & Dumrak, J. (2021). A system dynamics model for social vulnerability to natural disasters: Disaster risk assessment of an Australian city. International journal of disaster risk reduction, 60, 102258 https://doi.org/10.1016/j.ijdrr.2021.102258
Send comment about this article