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Extreme Water Level Simulation and Component Analysis in Delaware Estuary during Hurricane Isabel.

Authors :
Yin, Dongxiao
Muñoz, David F.
Bakhtyar, Roham
Xue, Z. George
Moftakhari, Hamed
Ferreira, Celso
Mandli, Kyle
Source :
Journal of the American Water Resources Association. Feb2022, Vol. 58 Issue 1, p19-33. 15p.
Publication Year :
2022

Abstract

Sea level rise and intense hurricane events make the East and Gulf Coasts of the United States increasingly vulnerable to flooding, which necessitates the development of computational models for accurate water level simulation in these areas to safeguard the coastal wellbeing. With this regard, a model framework for water level simulation over coastal transition zone during hurricane events is built in this study. The model takes advantage of the National Water Model's strength in simulating rainfall–runoff process, and D‐Flow Flexible Mesh's ability to support unstructured grid in hydrodynamic processes simulation with storm surges/tides information from the Advanced CIRCulation model. We apply the model on the Delaware Estuary to simulate extreme water level and to investigate the contribution of different physical components to it during Hurricane Isabel (2003). The model shows satisfactory performance with an average Willmott skill of 0.965. Model results suggest that storm surge is the most dominating component of extreme water level with an average contribution of 78.16%, second by the astronomical tide with 19.52%. While the contribution of rivers is mainly restricted to the upper part of the estuary upstream of Schuylkill River, local wind‐induced water level is more pronounced with values larger than 0.2 m over most part of the estuary. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
1093474X
Volume :
58
Issue :
1
Database :
Academic Search Index
Journal :
Journal of the American Water Resources Association
Publication Type :
Academic Journal
Accession number :
155397431
Full Text :
https://doi.org/10.1111/1752-1688.12947