Risk-Based and Hydrodynamic Pluvial Flood Forecasts in Real Time

被引:18
作者
Hofmann, Julian [1 ]
Schuettrumpf, Holger [1 ]
机构
[1] Rhein Westfal TH Aachen, Inst Hydraul Engn & Water Resources Management, D-57074 Aachen, Germany
关键词
urban flood; flash flood; pluvial flood; early warning system; real-time flood forecasting; risk analysis; urban flood modeling; hydrodynamic modeling; flood risk management; FLASH-FLOOD; MODEL; CITY; SIMULATION; PREDICTION; MANAGEMENT; WARNINGS; NETWORK; ENGLAND; SCALE;
D O I
10.3390/w12071895
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The effective forecast and warning of pluvial flooding in real time is one of the key elements and remaining challenges of an integrated urban flood risk management. This paper presents a new methodology for integrating risk-based solutions and 2D hydrodynamic models into the early warning process. Whereas existing hydrodynamic forecasting methods are based on rigid systems with extremely high computational demands, the proposed framework builds on a multi-model concept allowing the use of standard computer systems. As a key component, a pluvial flood alarm operator (PFA-Operator) is developed for selecting and controlling affected urban subcatchment models. By distributed computing of hydrologic independent models, the framework overcomes the issue of high computational times of hydrodynamic simulations. The PFA-Operator issues warnings and flood forecasts based on a two-step process: (1) impact-based rainfall thresholds for flood hotspots and (2) hydrodynamic real-time simulations of affected urban subcatchments models. Based on the open-source development software Qt, the system can be equipped with interchangeable modules and hydrodynamic software while building on the preliminary results of flood risk analysis. The framework was tested using a historic pluvial flood event in the city of Aachen, Germany. Results indicate the high efficiency and adaptability of the proposed system for operational warning systems in terms of both accuracy and computation time.
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页数:26
相关论文
共 67 条
[21]  
Der Deutsche Wetterdienst (DWD), 2015, RAD PRINZ NIED BEST
[22]  
Der Deutsche Wetterdienst (DWD), RADVOR RAD PREC FOR
[23]  
Der Deutscher Wetterdienst (DWD) Gesamtverban der Deuthschen Versicherungsgesellschaft (GDV), 2019, GES DTSCH VERS GDV F
[24]   Testing a simple 2D hydraulic model in an urban flood experiment [J].
Dottori, F. ;
Todini, E. .
HYDROLOGICAL PROCESSES, 2013, 27 (09) :1301-1320
[25]  
DWD, OP DAT
[26]  
DWD Climate Datacenter (CDC), 2010, RAST WIED STARKR BEM
[27]   Recommendations for Improving Integration in National End-to-End Flood Forecasting Systems: An Overview of the FFIR (Flooding From Intense Rainfall) Programme [J].
Flack, David L. A. ;
Skinner, Christopher J. ;
Hawkness-Smith, Lee ;
O'Donnell, Greg ;
Thompson, Robert J. ;
Waller, Joanne A. ;
Chen, Albert S. ;
Moloney, Jessica ;
Largeron, Chloe ;
Xia, Xilin ;
Blenkinsop, Stephen ;
Champion, Adrian J. ;
Perks, Matthew T. ;
Quinn, Niall ;
Speight, Linda J. .
WATER, 2019, 11 (04)
[28]   Convective-Scale Perturbation Growth across the Spectrum of Convective Regimes [J].
Flack, David L. A. ;
Gray, Suzanne L. ;
Plant, Robert S. ;
Lean, Humphrey W. ;
Craig, George C. .
MONTHLY WEATHER REVIEW, 2018, 146 (01) :387-405
[29]  
GDV, 2018, SCHAD CHRON DTSCH VE
[30]   High-resolution flood modeling of urban areas using MSN_Flood [J].
Hartnett M. ;
Nash S. .
Hartnett, Michael (Michael.Hartnett@nuigalway.ie), 2017, Editorial Office of Water Science and Engineering (10) :175-183