INSYDE-content is a probabilistic, multi-variable synthetic model designed to estimate flood damage for household contents on a component-by-component basis. It adopts the general model framework proposed in the original INSYDE for buildings (Dottori et al., 2016), where damages are first modelled component-wise in physical terms and then converted into monetary values using the full replacement costs derived from reference price lists. Model details and assumptions are described in the corresponding paper published in Natural Hazards and Earth System Sciences (Acharya et al. 2025). References Acharya P., Di Bacco, M., Molinari, D. & Scorzini A.R. (2025). INSYDE-content: a synthetic, multi-variable flood damage model for household contents. Natural Hazards and Earth System Sciences (in press). Dottori, F., Figueiredo, R., Martina, M. L., Molinari, D., & Scorzini, A. R. (2016). INSYDE: a synthetic, probabilistic flood damage model based on explicit cost analysis. Natural Hazards and Earth System Sciences, 16(12), 2577-2591.
INSYDE-content
Acharya, Pradeep;Di Bacco, Mario;Scorzini, Anna Rita
2025-01-01
Abstract
INSYDE-content is a probabilistic, multi-variable synthetic model designed to estimate flood damage for household contents on a component-by-component basis. It adopts the general model framework proposed in the original INSYDE for buildings (Dottori et al., 2016), where damages are first modelled component-wise in physical terms and then converted into monetary values using the full replacement costs derived from reference price lists. Model details and assumptions are described in the corresponding paper published in Natural Hazards and Earth System Sciences (Acharya et al. 2025). References Acharya P., Di Bacco, M., Molinari, D. & Scorzini A.R. (2025). INSYDE-content: a synthetic, multi-variable flood damage model for household contents. Natural Hazards and Earth System Sciences (in press). Dottori, F., Figueiredo, R., Martina, M. L., Molinari, D., & Scorzini, A. R. (2016). INSYDE: a synthetic, probabilistic flood damage model based on explicit cost analysis. Natural Hazards and Earth System Sciences, 16(12), 2577-2591.Pubblicazioni consigliate
I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.


