نوع مقاله : پژوهشی
نویسندگان
1 استاد گروه برنامه ریزی شهری و منطقه ای دانشکده برنامه ریزی و علوم محیطی دانشگاه تبریز
2 دانشیار گروه برنامه ریزی شهری و منطقه ای دانشکده برنامه ریزی و علوم محیطی دانشگاه تبریز
3 دانشجوی دکتری رشته جغرافیا و برنامه ریزی شهری دانشگاه تبریز
چکیده
کلیدواژهها
عنوان مقاله [English]
نویسندگان [English]
.Climate change is a significant threat to the global ecosystem, affecting both human life and the natural environment. While previously considered a natural seasonal change, human activities have accelerated the rate and severity of climate change. Floods are the most common natural hazard worldwide, accounting for almost half of all weather-related disasters. Land use maps in the years 1994, 2004, 2022 saw the decrease of garden lands and the increase of construction and the destruction of a large amount of vegetation in the region. The average amount of rainfall is the highest with 968 mm for the year1994, 835 mm for the year 2004 and 771 mm for the year2022. Based on the results, the amount of water retention in the basin for the years1994, 2004, 2022 is equal to 0.48%, 0.37% and 0.31%. The amount of water absorbed in the basin is equal to 1332, 12/01 and 10/56 in terms of million cubic meters in the mentioned years. The volume of flood realized for the years 1994, 2004, 2022 is equal to 21/56, 31.96, 42/94 million cubic meters, respectively. The amount of damages caused by flood for the years 1994, 2004, 2022 is equal to 7237 thousand dollars, 317908 thousand dollars and 884706 thousand dollars, respectively.
کلیدواژهها [English]
Ahmadzadeh, Hassan and Ahmadzadeh Kalibar, Fariborz, 2024 Spatial assessment of flood effects on the texture of metropolitan areas (case study: Tabriz metropolis), First National Conference on New Ideas and Solutions in Sustainable Development of Lake Urmia Watershed, Tabriz. Volume 56, Issue 3
October 2025 Pages 115-131.
Ahmed Mustafa , Martin Bruwier , Pierre Archambeau , Sébastian Erpicum , Michel Pirotton , Benjamin Dewals , Jacques Teller . Effects of spatial planning on future flood risks in urban environments, Journal of Environmental Management. Volume 225, 1 November 2018, Pages 193-204.
Ali, Amir Ali and Shakeri Borujeti, Nima and Soltani, Saeed and Bashari, Hossein (2013), Determination of soil hydrological group and main soil groups using SCS method and land suitability to determine land productivity pattern, Sixth National Conference on Watershed Management and Water and Soil Resources Management, Kerman.
Angelidou M., Balla C., Manousaridou A., Marmeloudis S., Nalmpantis D., Regional Science Inquiry, Vol. X, (3), 2018, pp. 33-45.
Angelidou, M., Psaltoglou, A., Komninos, N., Kakderi, C., Tsarchopoulos, P. and Panori, A. (2018),
"Enhancing sustainable urban development through smart city applications", Journal of Science and Technology Policy Management, Vol. 9 No. 2, pp. 146-169.
Aristeidis Kastridis, Dimitrios Stathis, Evaluation of Hydrological and Hydraulic Models Applied in Typical Mediterranean Ungauged Watersheds Using Post-Flash-Flood Measurements Hydrology 2020, 7(1), 12.
Bahman Vaisi Nabi Kandi, Arman Rast Khadio, Faezeh Shoja (1403). Modeling the impact of land use/land cover change on urban ecological resilience to flooding, a study of Rasht city, Quarterly Journal of Agriculture and Natural Resources. Journal of Natural Environment, No. 3,385_400.
Bose, S., Mazumdar, A. Urban flood risk assessment and mitigation with InVEST-UFRM model: a case study on Kolkata city, West Bengal state (India). Arab J Geosci 16, 320 (2023).
Bradford RA, O’Sullivan JJ, van der Craats M, Krywkow J, Rotko P, Aaltonen J, Bonaiuto M, De Dominici S, Waylen K, Schelfaut K (2012) Risk perception – issues for flood management in Europe. Nat Hazards Earth Syst Sci 12:2299–2309.
Catherine F. Grasham, Marina Korzenevica, Katrina J. Charles On considering climate resilience in urban water security: A review of the vulnerability of the urban poor in sub-Saharan Africa Volume6, Issue3 May/June 2019 wires water. Volume6, Issue3 May/June 2019 e1344.
Christopher C. Sampson, Andrew M. Smith, Paul D. Bates, Jeffrey C. Neal, Lorenzo Alfieri, Jim E. Freer, A high-resolution global flood hazard model,water resources resarche. Volume51, Issue9September 2015 Pages 7358-7381.
CRED; UNDRR. Human Cost of Disasters an Overview of the Last 20 Years 2000–2019; UNDRR: Geneva, Switzerland, 2020.
Daryanvard, Mehdi, Ahmadi, Jafar, Rezaei, Mojtaba, and Moghaddam, Mustafa, 2025, Investigation of new methods of collecting surface water for sustainable urban development, 26th National Conference on Civil Engineering, Architecture and Urban Planning, Shirvan.
Daniel B. Wright, James A. Smith, Mary Lynn Baeck Flood frequency analysis using radar rainfall fields and stochastic storm transposition Hydroclimatology of flash flooding in Atlanta Volume50, Issue2 February 2014 Pages 1592-1615.
Denissen, A.-K. Climate Change & Its Impacts on Bangladesh. 2012, artikel/climate-change-its-impacts-bangladesh accessed on 5 April 2021. pp. 86–95.
Esmailpour, Marzieh. (2024)flood risk assessment in the Ojanchay watershed using fuzzy logic and HEC-HMS hydrological model, Journal of Geography and Environmental Hazards (2)13, 65_91.
Farnam, Sina and Mokhtarpour, Akbar and Ghashqaei, Amirhossein and Nejadnik, Pouya. (2019), Flood Management and Strategies to Combat It, 18th Iranian Hydraulic Conference, Tehran.
Frans Klijn , Heidi Kreibich , Hans de Moel , Edmund Penning-Rowsell, Adaptive flood risk management planning based on a comprehensive flood risk conceptualization, An International Journal Devoted to Scientific, Engineering, Socio-Economic and Policy Responses to Environmental Change, Volume 20, pages 845–864, (2015).
James A. Smith Mary Lynn Baec Gabriele Villarini Daniel B. Wright, and Witold KrajewskiExtreme Flood Response: The June 2008 Flooding in Iowa Journal of Hydrometeorology Page(s): 1810–1825.
Hadi Allafta and Christian Opp GIS-based multi-criteria analysis for flood prone areasmapping in the trans-boundary Shatt Al-Arab basin,Iraq-Iran GEOMATICS, NATURAL HAZARDS AND RISK2021, VOL. 12, NO. 1, 2087–2116.
Hemmatzadeh, Yalda, Barani, Hossein, and Kabir, Atena. (2009). The role of vegetation management on surface runoff (Case study: Kechik watershed, Golestan province). Soil and Water Conservation Research (Agricultural Sciences and Natural Resources), 16(2), 19-33.
Hernantes, J.; Maraña, P.; Gimenez, R.; Sarriegi, J.M.; Labaka, L. Towards Resilient Cities: A Maturity Model for Operationalizing Resilience. Cities 2019, 84, 96–103.
Hernández-Hernández, M., Olcina, J., and Morote, Á. F. (2020). Urban stormwater management, a tool for adapting to climate change: from risk to resource. Water 12, 1–20.
Hosseini Rostami, Sepideh Sadat, Zakir Haqiqi, Kianoush and Zabihi, Hossein. (2025). Social analysis of the flood in Aq Qala city based on the framework of development and political institutional analysis. (PIAD) Journal of Natural Environmental Hazards (43)14, 11_79.
Ganji, Kamran and Gharechelo, Saeed and Ahmadi, Ahmad and Avari Doghaei, Mahmoud. (2019), Preparing a flood risk vulnerability map of Aq Qala city using the AHP method, 19th Iranian Hydraulic Conference, Mashhad.
Ghorbani, Rasoul, Karabsi, Pooran and Varostaei, Shahrivar (2022). Maragheh city sprawl and periurban land use changes. Journal of Periurban Space Development » Volume 3, Number 1, Spring and Summer 1400.1-18.
Kardin Hamedani, Reza, Azadi, Saeed, Marouf, Safar, and Taheri Tizro, Abdollah. (2018). The effect of slope rate and direction on sediment and surface runoff, case study: Gonbad watershed. Watershed Engineering and Management, 10(4), 659-670.
Karimullah Sefat ORCID Icon and Ryota Tsubaki, Flood Risk Assessment of the Middle Reach of the Helmand River, Afghanistan, JDR Vol.19 No.2 pp. 455-464(2024).
Kevin E. Trenberth Understanding climate change through Earth’s energy flows March 2020Journal of the Royal Society of New Zealand 50(775):1-17.
Mehryar, S., Surminski, S., 2022. Investigating flood resilience perceptions and supporting collective decision-making through fuzzy cognitive mapping. Science of the Total Environment 837, 155854.
Moghadas, M.; Asadzadeh, A.; Vafeidis, A.; Fekete, A.; Kötter, T. A multi-criteria approach for assessing urban flood resilience in Tehran, Iran. Int. J. Disaster Risk Reduct. 2019. Volume 35, April 2019, 101069.
Negaresh, Hossein, and Veisi, Jalil. (2013). Analysis of the effects of precipitation changes on flood risk in the Ravand River basin (West Islamabad region-Kermanshah province). Regional Planning, 3(11), 79-97.
Negahban Saeed, Marhamat, M. (2024). Flood risk zoning in Jahrom urban basin using machine algorithm (Maxent). Hydrogeomorphology, 11(41): 27– 47.
Peyman Yariyan a , Mohammadtaghi Avand b , Rahim Ali Abbaspour c , Ali TorabiHaghighi d , Romulus Costachee,f , Omid Ghorbanzadeh g , Saeid Janizadeh band Thomas Blaschke, Flood susceptibility mapping using an improved analyticnetwork process with statistical models, GEOMATICS, NATURAL HAZARDS AND RISK2020, VOL. 11, NO. 1, 2282–2314.
Qi, Y., Chan, F. K. S., Thorne, C., O'Donnell, E., Quagliolo, C., Comino, E., et al. (2020). Addressing challenges of urban water management in chinese sponge cities via nature-based solutions. Water 12, 1–24.
Rey, Emmanuel Laprise, Martine ,Lufkin, Sophie The Multiple Potentials of Urban Brownfields, 2022 Neighbourhoods in Transition. Brownfield Regeneration in European Metropolitan Areas. 978-3-030-82207-1.
Rey, W., Martínez-Amador, M., Salles, P., Mendoza, E. T., Trejo-Rangel, M. A., Franklin, G. L., Ruiz-Salcines, P., Appendini, C. M., & Quintero-Ibáñez, J. (2020). Assessing Different Flood Risk and Damage Approaches: A Case of Study in Progreso, Yucatan, Mexico. Journal of Marine Science and Engineering, 8(2), 137.
Rodell, M., Li, B. Changing intensity of hydroclimatic extreme events revealed by GRACE and GRACE-FO. Nat Water 1, 241–248 (2023).
Sami, Ebrahim and Ebadi, Maryam. (2024). Zoning of urban flood risk using analytical network (ANP) and fuzzy logic, case study: Maragheh city. Quarterly Journal of Urban Ecology Research 15 No. 1 (34), 171-18.
Talebi Ahmad, Raigani Behzad, Talaian Mohammad, and Abbasi Goodarzi Fariba. (2019). Evaluation of the possible effects of land use changes on water quality of Shadegan Wetland using remote sensing data, Journal of Spatial Analysis of Environmental Hazards, Summer 2019, Volume 7 - Issue 2, pp. 33-48.
Tayyab, M.; Zhang, J.;Hussain, M.; Ullah, S.; Liu, X.; Khan,S.N.; Baig, M.A.; Hassan,W.;Al-Shaibah, B. GIS-Based Urban Flood Resilience Assessment Using Urban Flood Resilience Model: A Case Study of Peshawar City, Khyber Pakhtunkhwa, Pakistan. Remote Sens. Journal: Remote Sens., 2021Volume: 13 Number: 1864.
Tierolf, L., de Moel, H., van Vliet, J., 2021. Modeling urban development and its exposure to river flood risk in Southeast Asia. Computers, Environment and Urban Systems 87, 101620.
Tze Huey Tam, Muhammad Zulkarnain Abdul Rahman, Sobri Harun, Shamsuddin Shahid, Sophal Try, Mohamad Hidayat Jamal, Zamri Ismail, Khamarrul Azahari Razak, Mohd Khairolden Ghani, Yusrin Faiz Abdul Wahab , Flood hazard assessment using design rainfall under climate change scenarios in the Kelantan River Basin, Malaysia, International Journal of Disaster Resilience in the Built Environment ISSN: 1759-5908.
Viktor Rözer, Sara Mehryar and Swenja SurminskiFrom managing risk to increasing resilience: a review on the development of urban flood resilience, its assessment and the implications for decision making, Environmental Research Letters, Volume 17, Number 12.
Xie, J.; Wu, C.; Li, H.; Chen, G. Study on Storm-Water Management of Grassed Swales and Permeable Pavement Based on SWMM. Water 2017, 9, 840.
Xuefei Mei, Zhijun Dai, Stephen E. Darby, Shu Gao, Jie Wang, Weiguo Jiang . Modulation of Extreme Flood Levels by Impoundment Significantly Offset by Floodplain Loss Downstream of the Three Gorges Dam. Geophysical Research Letters: Volume 45, Issue 7. Pages 3147-3155.
Xu, Z., Ma, J., Zheng, H., Wang, L., Ying, L., Li, R., Yang, Y., 2024. Quantification of the flood mitigation ecosystem service by coupling hydrological and hydrodynamic models. Ecosystem Services 68, 101640.
Yarian, Peyman and Karami, Mohammad Reza (2020). Assessment and uncertainty of vulnerability of cities due to earthquakes using FAHP model, case study: Sanandaj city. Quarterly Journal of Geography and Environmental Hazards, Volume: 8, Issue: 31.
Zarei Mehdi, Zandi Rahman, Naeemi Tabar Mahnaz. Assessing the potential for flood occurrence using support vector machine, CHIAD and random forest data mining models (Case study: Farizi watershed) Journal of Watershed Management 2022; 13 (25): 144-133.
Ziaian Firuzabadi Parviz, Badragnejad Ayoub, Sarli Reza, Babaei Mahboob. Measuring and identifying flood prone areas from the perspective of geological formations in the Birjand watershed using RS/GIS. Applied Research in Geographic Sciences 2020; 20 (57): 24-1.
Zainali Batul,Mahdi Fourotan (2025). Identifying flood-prone areas in the Yamchi watershed by monitoring spectral indices and satellite data. Journal Hydrogeomorphology, 12(44): 132 – 150.
Zhou, Q.; Leng, G.; Su, J.; Ren, Y. Comparison of Urbanization and Climate Change Impacts on Urban Flood Volumes: Importance of Urban Planning and Drainage Adaptation. Sci. Total Environ. 2019, 658, 24–33.
Zhang, Z., Zhang, J., Zhang, Y., Chen, Y., Yan, J., 2023. Urban flood resilience evaluation based on GIS and multi-source data: a case study of Changchun City. Remote Sensing 15(7), 1872.
Zhou, Z., Smith, J. A., Baeck, M. L., Wright, D. B., Smith, B. K., and Liu, S.: The impact of the spatiotemporal structure of rainfall on flood frequency over a small urban watershed: an approach coupling stochastic storm transposition and hydrologic modeling, Hydrol. Earth Syst. Sci 2021, 25(9), 4701–4717.