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2012 | 21 | 6 |

Tytuł artykułu

Flood risk assessment using GIS (case study: Golestan province, Iran)

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
In recent years humans have endured increasing numbers of natural disasters, of which flooding is the greatest and most common throughout the world. Iran is also exposed to floods, considering the severe damage recently incurred in Golestan province, particularly Gorganroud watershed. Due to the importance of the subject and lack of comprehensive studies on flood risk in the country's watersheds, it is crucial to perform flood risk assessment using appropriate tools, such as Landsat ETM+ imaging and digital elevation model data collections in geographic information system throughout the region. For this purpose, database maps of 6 subwatersheds in Gorganroud watershed were prepared in 5 layers affecting flooding in the region. By overlaying and weighing three layers in GIS software, a layer of flood hazard intensity was obtained. Next, by means of obtained numbers and scoring, the overuse layer priorities were determined. Then, these two flooding layers were overlaid with the help of a two-dimensional matrix, and the final map of flood risk was obtained. Finally, it was found that Chelichay and Sarab Gorganroud, making up to 24.59% of the Gorganroud watershed, are the most risky sub-watersheds. In light of the fact that the data pertaining to Gorganroud watershed have never been entirely used to sort out the risk priorities in the region, the new method presented in this paper can lead to a more accurate and comprehensive understanding about what is really taking place in it.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

21

Numer

6

Opis fizyczny

p.1817-1824,fig.,ref.

Twórcy

  • Department of Environment, Graduate School of Environment and Energy, Science and Research Branch, Islamic Azad University, P.O.Box: 14155/4933, Tehran, Iran
autor
  • Department of Environment, Graduate School of Environment and Energy, Science and Research Branch, Islamic Azad University, P.O.Box: 14155/4933, Tehran, Iran
autor
  • Engineering Seismology, International Institute of Earthquake Engineering and Seismology (IEES), Tehran, Iran
autor
  • Department of Environment, Graduate School of Environment and Energy, Science and Research Branch, Islamic Azad University, P.O.Box: 14155/4933, Tehran, Iran
  • Geomatics College of National Cartographic Center of Iran, P.O.Box: 13185-1684, Tehran, Iran

Bibliografia

  • 1. HOSSEINI B., MEHDIYAR L. Applied strategic planning in crisis management, Aid and save learning and reduction of disaster impacts, international conference of crisis management, 2006
  • 2. SHAKER M., HOSSEINI H. Aid and save learning and reduction of disaster impacts, international conference of crisis management, 2006.
  • 3. NAIENI K., ARDALAN A. Project final report early warning information management, Early warning system for flash floods in Golestan Province, Iran, 2006.
  • 4. AGRICULTURAL RESEARCH AND EDUCATION ORGANIZATION, Soil conservation & watershed management research institute, Gorganroud watershed floodplain, 245, 2004-2006.
  • 5. DANG N.M., BABEL M.S., LUONG H.T. Evaluation of flood risk parameters in the Day River flood Diversion area, Red River Delta, Vietnam, Nat Hazard, Springer, doi: 10.1007/s11069-010-9558-x, 2010.
  • 6. DE MOEL H., VAN ALPHEN J., AERTS J.C.J.H. Flood maps in Europe – methods, availability and use, doi:10.5194/nhess-9-289-2009. Nat Hazards Earth Syst Sci., 9, (2), 289, 2009.
  • 7. LAWRENCE J., XELROD A., TIMOTHY M. N. Perceptions of ecological risk from natural hazards, Decision Research, Journal of Risk Research, 2, (1), 31, 1999.
  • 8. JIQUN Z., CHENGHU Z., KAIQIN X., MASATAKA W. Flood disaster monitoring and evaluation in China, Environmental Hazards, 4, 33, 2002.
  • 9. SINNAKAUDAN S.K., GHANI A.A., AHMAD M.S.S., ZAKARIA N.A. Flood risk mapping for Pari River incorporating sediment transport, Environ. Model. Softw., 18, 119, 2003.
  • 10. YALCIN G., AKYUREK Z. Analyzing flood vulnerable areas with multicriteria evaluation, XXth International Society for Photogrammetry and Remote Sensing Congress, 2004.
  • 11. PISTRIKA A., TSAKIRIS G. Flood Risk Assessment: A Methodological Framework, Water Resources Management: New Approaches and Technologies, European Water Resources Association, Chania, Crete- Greece,14-16 June, 2007.
  • 12. HANSSON K., DANIELSON M., EKENBERG L. Assessment of a flood management framework, International Journal of Public Information Systems, 1, (25- 37), 2008.
  • 13. ROWSHAN G.R., MOHAMMADI H., NASRABADI T., HOVEIDI H., BAGHVAND A. The role of climate study in analyzing flood forming potential of water basins, Int J of Env Res., 1, (3), 231, 2007.
  • 14. KHODAEI H. Optimizing flood warning system using value engineering, M.S. Thesis, University of Tehran, Natural Disaster Department, 2006 [In Persian].
  • 15. SAADAT H., BONNEL R., SHARIFI F., MEHUYS G., NAMDAR M., ALE-EBRAHIM S. Landform classification from digital elevation model and satellite imagery, Geomorphology, 100, 453, 2008.
  • 16. OMIDVAR B., KHODAEI H. Using value engineering to optimize flood forecasting and flood warning systems: Golestan and Golabdare watersheds in Iran as case studies, Nat Hazards., 47, 281, 2008.
  • 17. SIDERIS M. observing and changing earth: proceeding of the 2007, international association of geodesy symposia, Perugia, Italy, Springer, 133, 2008.
  • 18. VARVANI J., FEIZNIA S., MAHDAVI M., ARAB KHEDRI M. Regional analysis of suspended sediment using Regression Equation in Gorganroud watershed, Journal of Iran natural resources, 55, (1), 2002.
  • 19. CHANG H., FRANCZYK J., KIM C. what is responsible for increasing flood risks, Nat Hazards, 48, 339, 2009. 20. FOREST RANGE AND WATERSHED MANAGEMENT ORGANIZATION, Flood workgroup, Gorganroud watershed, national plan of natural resource and watershed management aspects in Iran, engineering & evaluation plan office, 1991-2008.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-bb278842-5354-415e-bee1-d10ad1ccc545
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