INSYDE-BE: adaptation of the INSYDE model to the Walloon region (Belgium)

The spatial transfer of flood damage models among regions and countries is a challenging but unavoidable approach for performing flood risk assessments in data- and model-scarce regions. In these cases, similarities and differences between the contexts of application should be considered to obtain reliable damage estimations, and, in some cases, the adaptation of the original model to the new conditions is required. This study exemplifies a replicable procedure for the adaptation to the Belgian context of a multi-variable, synthetic flood damage model for the residential sector originally deve... Mehr ...

Verfasser: A. R. Scorzini
B. Dewals
D. Rodriguez Castro
P. Archambeau
D. Molinari
Dokumenttyp: Artikel
Erscheinungsdatum: 2022
Reihe/Periodikum: Natural Hazards and Earth System Sciences, Vol 22, Pp 1743-1761 (2022)
Verlag/Hrsg.: Copernicus Publications
Schlagwörter: Environmental technology. Sanitary engineering / TD1-1066 / Geography. Anthropology. Recreation / G / Environmental sciences / GE1-350 / Geology / QE1-996.5
Sprache: Englisch
Permalink: https://search.fid-benelux.de/Record/base-26905753
Datenquelle: BASE; Originalkatalog
Powered By: BASE
Link(s) : https://doi.org/10.5194/nhess-22-1743-2022

The spatial transfer of flood damage models among regions and countries is a challenging but unavoidable approach for performing flood risk assessments in data- and model-scarce regions. In these cases, similarities and differences between the contexts of application should be considered to obtain reliable damage estimations, and, in some cases, the adaptation of the original model to the new conditions is required. This study exemplifies a replicable procedure for the adaptation to the Belgian context of a multi-variable, synthetic flood damage model for the residential sector originally developed for Italy (INSYDE). The study illustrates necessary amendments in model assumptions, especially regarding default input values for the hazard and building parameters and damage functions describing the modeled damage mechanisms.