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Geological Hazard Investigation Combined with Mathematical Modeling in Flood Risk Assessment: A Case Study of Hoang Long River, Ninh Binh Province, Vietnam

Treść / Zawartość
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Warianty tytułu
PL
Badanie i modelowanie matematyczne zagrożeń geologicznych w ocenie ryzyka powodziowego: studium przypadku rzeki Hoang Long, prowincja Ninh Binh, Wietnam
Konferencja
POL-VIET 2023 — the 7th International Conference POL-VIET
Języki publikacji
EN
Abstrakty
EN
The primary function of the river dike system is to safeguard lives and property from flood hazards. However, due to aging infrastructure and various geological or anthropogenic factors, certain vulnerable sections of the dike system can emerge as the water level in the river increases. Flood maps are one tool that presents vital information for authorities and residents in the flood risk mitigation. This study's primary goal is to provide a flood map under the dike break condition using the estimated fracture size parameters from a geo-radar survey and the MIKE FLOOD model. This approach addresses the observed research gap by utilizing a survey database instead of relying on empirical models which are capable to produce the conservative estimates of the dike breach outflow. A case study is conducted on the Hoang Long River dike system in Ninh Binh Province, Vietnam.
Rocznik
Strony
319--325
Opis fizyczny
Bibliogr. 16 poz., rys., tab., wykr., zdj.
Twórcy
autor
  • Faculty of Hydrology, Meteorology and Oceanography, University of Science, Vietnam National University, Hanoi
autor
  • Faculty of Geosciences and Geoengineering, Hanoi University of Mining and Geology
  • Faculty of Hydrology, Meteorology and Oceanography, University of Science, Vietnam National University, Hanoi
Bibliografia
  • 1. Ansori M.B., 2021. Flood Inundation and Dam Break Analysis for Disaster Risk Mitigation (a Case Study of Way Apu Dam ). . International Journal of GEOMATE, 21, 84–92.
  • 2. Bomers A., 2021. Predicting outflow hydrographs of potential dike breaches in a bifurcating river system using narx neural networks. Hydrology, 8.
  • 3. Brunner G.W.and CEIWR-HEC., 2016. HEC-RAS River Analysis System: User Manual 1D and 2D Version 5.0. US Army Corps of Engineers, 1–790.
  • 4. Dat T.T., Tri D.Q., & and Troung D.D., 2019. he Application of Mike Flood Model in Inundation Simulation with the Dam- break Scenarios : A Case Study of DakDrinh Reservoir in Vietnam The Application of Mike Flood Model in Inundation Simulation with the Dam-break Scenarios : A Case Study of DakDrinh. International Journal of Earth Sciences and Engineering, 12, 60-70.
  • 5. DHI Water and Environment., 2014. MIKE Flood - User Manual. Hydrodynamic Module User Guide, pp. 1–162.
  • 6. Fread D.L., 1991. BREACH: an erosion model for earthen dam failures. Silver Spring. National Weather Service, Office of Hydrology.
  • 7. Froehlich D.C., 2008. Embankment Dam Breach Parameters and Their Uncertainties. Environmental Protection, 134.
  • 8. Huan N.M., 2015. Building Spatial Distribution of Tidal Harmonizing Constituents for Central Vietnam Sea Journal of Science: Natural Sciences and Technology, 31, 157–166.
  • 9. Hue N.H., Huong D.C., & and Thanh N.H., 2019. Technical Solution to Improve the Existing River Dikes for both Flood Prevention and Transportation Purposes. IOP Conference Series: Materials Science and Engineering, 507.
  • 10. Nash J.E., S. J. V., 1970. River flow forecasting through conceptual models part I - A discussion of principles. Journal of Hydrology, 10, 282–290.
  • 11. Nguyen M.T., Sebesvari Z., Souvignet M., Bachofer F., Braun A., & Garschagen M., 2021. Understanding and assessing flood risk in Vietnam: Current status, persisting gaps, and future directions. Journal of Flood Risk Management, 14, 1–24.
  • 12. The Ministry of Agriculture and Rural Development., 2012. Decision 1629/QĐ-BNN-TCTL dated July 10, 2012. Decision on the dike classification and grading in Ninh Binh province.
  • 13. Wu W., 2011. Earthen Embankment Breaching. Journal of Hydraulic Engineering, 137, 1549–1564.
  • 14. Zagonjolli M., 2007. "Dam break modelling, risk assessment and uncertainty analysis for flood mitigation", Taylor & Francis Group Plc, pp. 1–162
  • 15. Sambor A, Szymanek A Analysis of the migration of chemical compounds from fly ash exposed the weather condition ,Chemical and Process Engineering. 2014, ISSN:0208-6425
  • 16. Szymanek A., de las Obras-Loscertales M., Pajdak A.Effect of sorbent reactivity on flue gas desulphurization in fluidized-bed boilers under air firing mode. The Canadian Journal of Chemical Engineering , Volume 96, april 2018, 895-902
Uwagi
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu „Społeczna odpowiedzialność nauki” - moduł: Popularyzacja nauki i promocja sportu (2022-2023)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-4074bc4c-e1cc-437d-a1fb-67b4063ad27e
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