Flood Inundation Mapping at Ungauged Basins Using Coupled Hydrometeorological–Hydraulic Modelling: The Catastrophic Case of the 2006 Flash Flood in Volos City, Greece
暂无分享,去创建一个
Elias Dimitriou | Anastasios Papadopoulos | Athanasios Loukas | George Varlas | Galateia Terti | George Papaioannou | Yiannis Panagopoulos | A. Loukas | A. Papadopoulos | G. Papaioannou | Y. Panagopoulos | E. Dimitriou | G. Varlas | G. Terti
[1] F. Porcù,et al. The Antalya 5 December 2002 Storm: Observations and Model Analysis , 2006 .
[2] Paul D. Bates,et al. Probabilistic evaluation of flood hazard in urban areas using Monte Carlo simulation , 2012 .
[3] Y. Kuo,et al. Residential Flood Loss Assessment and Risk Mapping from High-Resolution Simulation , 2019, Water.
[4] I. Yucel,et al. Calibration and evaluation of a flood forecasting system: Utility of numerical weather prediction model, data assimilation and satellite-based rainfall , 2015 .
[5] F. Silvestro,et al. Impact-based flash-flood forecasting system: Sensitivity to high resolution numerical weather prediction systems and soil moisture , 2019, Journal of Hydrology.
[6] Céline Lutoff,et al. A space and time framework for analyzing human anticipation of flash floods , 2013 .
[7] K. Verdin,et al. New Global Hydrography Derived From Spaceborne Elevation Data , 2008 .
[8] V. Kotroni,et al. Lightning and rain dynamic indices as predictors for flash floods events in the Mediterranean , 2010 .
[9] David R. Maidment,et al. Conceptual Framework for the National Flood Interoperability Experiment , 2017 .
[10] Andreas Paul Zischg,et al. Sensitivity of flood loss estimates to building representation and flow depth attribution methods in micro-scale flood modelling , 2018, Natural Hazards.
[11] G. Tsakiris,et al. Comparing Various Methods of Building Representation for 2D Flood Modelling In Built-Up Areas , 2014, Water Resources Management.
[12] L. Vasiliades,et al. Flood inundation mapping sensitivity to riverine spatial resolution and modelling approach , 2016, Natural Hazards.
[13] Anastasios Papadopoulos,et al. Analysis of a Low-level Coastal Jet off the Western Coast of Norway , 2014 .
[14] F. Macchione,et al. Extracting quantitative data from non-conventional information for the hydraulic reconstruction of past urban flood events. A case study , 2019, Journal of Hydrology.
[15] Elizabeth M. Argyle,et al. The HMT Multi-Radar Multi-Sensor Hydro Experiment , 2017 .
[16] Fatemeh Jalayer,et al. Debris flow damage incurred to buildings: an in situ back analysis , 2016 .
[17] J. Gourley,et al. A Situation-Based Analysis of Flash Flood Fatalities in the United States , 2017 .
[18] J. Dudhia,et al. A New Vertical Diffusion Package with an Explicit Treatment of Entrainment Processes , 2006 .
[19] F. Dottori,et al. Detailed data is welcome, but with a pinch of salt: Accuracy, precision, and uncertainty in flood inundation modeling , 2013 .
[20] Theodora Lendzioch,et al. UAV-Based Optical Granulometry as Tool for Detecting Changes in Structure of Flood Depositions , 2017, Remote. Sens..
[21] Damien Sulla-Menashe,et al. MODIS Collection 5 global land cover: Algorithm refinements and characterization of new datasets , 2010 .
[22] R. Romanowicz,et al. Maximising the usefulness of flood risk assessment for the River Vistula in Warsaw , 2013 .
[23] S. McCutcheon,et al. An Overview of Synoptic and Mesoscale Factors Contributing to the Disastrous Atlanta Flood of 2009 , 2011 .
[24] P. Bates,et al. A simple raster-based model for flood inundation simulation , 2000 .
[25] S. Freitas,et al. A scale and aerosol aware stochastic convective parameterization for weather and air quality modeling , 2013 .
[26] M. Diakakis,et al. Floods in Greece, a statistical and spatial approach , 2012, Natural Hazards.
[27] Demetris Koutsoyiannis,et al. Comparative evaluation of 1D and quasi-2D hydraulic models based on benchmark and real-world applications for uncertainty assessment in flood mapping , 2016 .
[28] A. Elshorbagy,et al. Flood mapping under uncertainty: a case study in the Canadian prairies , 2018, Natural Hazards.
[29] G. Powers,et al. A Description of the Advanced Research WRF Version 3 , 2008 .
[30] Jochen E. Schubert,et al. Building treatments for urban flood inundation models and implications for predictive skill and modeling efficiency , 2012 .
[31] G. Thompson,et al. Explicit Forecasts of Winter Precipitation Using an Improved Bulk Microphysics Scheme. Part II: Implementation of a New Snow Parameterization , 2008 .
[32] Dawei Han,et al. Modeling the high-resolution dynamic exposure to flooding in a city region , 2019, Hydrology and Earth System Sciences.
[33] G. Aronica,et al. Pluvial flooding in urban areas: the role of surface drainage efficiency , 2018 .
[34] J. Dudhia,et al. 2 A IMPLEMENTATION AND VERIFICATION OF THE UNIFIED NOAH LAND SURFACE MODEL IN THE WRF MODEL , 2003 .
[35] Giuseppe T. Aronica,et al. Probabilistic flood inundation mapping at ungauged streams due to roughness coefficient uncertainty in hydraulic modelling , 2017 .
[36] Silas C. Michaelides,et al. A Multi-Platform Hydrometeorological Analysis of the Flash Flood Event of 15 November 2017 in Attica, Greece , 2018, Remote. Sens..
[37] Anthony J. Jakeman,et al. Flood inundation modelling: A review of methods, recent advances and uncertainty analysis , 2017, Environ. Model. Softw..
[38] Fangbi Tan,et al. Improved Building Treatment Approach for Urban Inundation Modeling: A Case Study in Wuhan, China , 2018, Water.
[39] Eric Gaume,et al. Post‐flood field investigations in upland catchments after major flash floods: proposal of a methodology and illustrations , 2008 .
[40] Yang Hong,et al. The FLASH Project: Improving the Tools for Flash Flood Monitoring and Prediction across the United States , 2017 .
[41] L. Vasiliades,et al. An Operational Method for Flood Directive Implementation in Ungauged Urban Areas , 2018 .
[42] D. Gesch,et al. Global multi-resolution terrain elevation data 2010 (GMTED2010) , 2011 .
[43] J. Dudhia,et al. A Revised Scheme for the WRF Surface Layer Formulation , 2012 .
[44] G. Korres,et al. Assessing the impact of Argo floats temperature measurements on the numerical weather prediction forecast skill , 2019, Mediterranean Marine Science.
[45] The Impact of Cyclone Xaver on Hydropower Potential in Norway , 2017 .
[46] A. Papadopoulos,et al. An analysis of the synoptic and dynamical characteristics of hurricane Sandy (2012) , 2019, Meteorology and Atmospheric Physics.
[47] Adam Kiczko,et al. Impact of Uncertainty of Floodplain Digital Terrain Model on 1D Hydrodynamic Flow Calculation , 2018, Water.
[48] Jonathan J Gourley,et al. Toward Probabilistic Prediction of Flash Flood Human Impacts , 2019, Risk analysis : an official publication of the Society for Risk Analysis.
[49] Kim Wright,et al. A Review of People’s Behavior in and around Floodwater , 2015 .
[50] Alfred J. Kalyanapu,et al. Accounting digital elevation uncertainty for flood consequence assessment , 2018 .
[51] Wei Yu,et al. Fully coupled atmosphere‐hydrology simulations for the central Mediterranean: Impact of enhanced hydrological parameterization for short and long time scales , 2015 .
[52] C. Medaglia,et al. A study on cut-off low vertical structure and precipitation in the Mediterranean region , 2007 .
[53] C. Spyrou,et al. Assessing the Implicit Rain Impact on Sea State During Hurricane Sandy (2012) , 2018, Geophysical Research Letters.
[54] Hélène Roux,et al. Flood forecasting using a coupled hydrological and hydraulic model (based on FVM) and highresolution meteorological model , 2018 .
[55] W. Collins,et al. Radiative forcing by long‐lived greenhouse gases: Calculations with the AER radiative transfer models , 2008 .
[56] Andrew Jarvis,et al. Hole-filled SRTM for the globe Version 4 , 2008 .
[57] Venkatesh Merwade,et al. Accounting for model structure, parameter and input forcing uncertainty in flood inundation modeling using Bayesian model averaging , 2018, Journal of Hydrology.
[58] H. Kunstmann,et al. Comparing One-Way and Two-Way Coupled Hydrometeorological Forecasting Systems for Flood Forecasting in the Mediterranean Region , 2016 .
[59] J. Leitão,et al. Towards the optimal fusion of high-resolution Digital Elevation Models for detailed urban flood assessment , 2018, Journal of Hydrology.
[60] L. Vasiliades,et al. Multi-Criteria Analysis Framework for Potential Flood Prone Areas Mapping , 2014, Water Resources Management.
[61] T. T. Dullo,et al. Ensemble-based flood vulnerability assessment for probable maximum flood in a changing environment , 2019, Journal of Hydrology.
[62] Offshore Wind Energy Analysis of Cyclone Xaver over North Europe , 2016 .
[63] P. Blišťan,et al. Mitigation of the Adverse Consequences of Floods for Human Life, Infrastructure, and the Environment , 2017 .
[64] Anastasios Papadopoulos,et al. Implementation of a two-way coupled atmosphere-ocean wave modeling system for assessing air-sea interaction over the Mediterranean Sea , 2017, Atmospheric Research.
[65] Michel Lang,et al. Understanding Flood Regime Changes in Europe: A state of the art assessment , 2013 .
[66] Heiko Apel,et al. Flood risk analyses—how detailed do we need to be? , 2009 .
[67] Jordan G. Powers,et al. The Weather Research and Forecasting Model: Overview, System Efforts, and Future Directions , 2017 .
[68] M. Llasat,et al. MEFF: The database of MEditerranean Flood Fatalities (1980 to 2015) , 2018, Journal of Flood Risk Management.