Influence of Wave–Current Interaction on a Cyclone-Induced Storm Surge Event in the Ganges–Brahmaputra–Meghna Delta: Part 1—Effects on Water Level

The Ganges–Brahmaputra–Meghna Delta (GBMD) located in the head of the Bay of Bengal is regularly affected by severe tropical cyclones frequently. The GBMD covers the Bangladesh coast, which is one of the most vulnerable areas in the world due to cyclone-induced storm surges. More than 30% of the tot...

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Published in:Journal of marine science and engineering Vol. 11; no. 2; p. 328
Main Authors: Elahi, Md Wasif E, Wang, Xiao Hua, Salcedo-Castro, Julio, Ritchie, Elizabeth A.
Format: Journal Article
Language:English
Published: Basel MDPI AG 01-02-2023
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Abstract The Ganges–Brahmaputra–Meghna Delta (GBMD) located in the head of the Bay of Bengal is regularly affected by severe tropical cyclones frequently. The GBMD covers the Bangladesh coast, which is one of the most vulnerable areas in the world due to cyclone-induced storm surges. More than 30% of the total country’s population lives on the Bangladesh coast. Hence, it is crucial to understand the underlying processes that modulate the storm surge height in the GBMD. A barotropic numerical 3D model setup is established by using Delft3D and SWAN to investigate a cyclone-induced storm surge event. The model is calibrated and validated for Cyclone Sidr in 2007 and applied to six idealized cyclonic scenarios. Numerical experiments with different coupling configurations are performed to distinguish the contribution of wind, tides, waves, and wave–current interactions (WCI) on the storm surge height. Results show that the wind-driven setup is the dominant contributor to the storm surge height during cyclonic events. Based on the tidal phase and wind direction, the interaction between tide and wind can increase or decrease the magnitude of the storm surge height. Finally, considering the wind-driven wave may increase the surge height up to 0.3 m along the coastline through a strong wave setup.
AbstractList The Ganges-Brahmaputra-Meghna Delta (GBMD) located in the head of the Bay of Bengal is regularly affected by severe tropical cyclones frequently. The GBMD covers the Bangladesh coast, which is one of the most vulnerable areas in the world due to cyclone-induced storm surges. More than 30% of the total country's population lives on the Bangladesh coast. Hence, it is crucial to understand the underlying processes that modulate the storm surge height in the GBMD. A barotropic numerical 3D model setup is established by using Delft3D and SWAN to investigate a cyclone-induced storm surge event. The model is calibrated and validated for Cyclone Sidr in 2007 and applied to six idealized cyclonic scenarios. Numerical experiments with different coupling configurations are performed to distinguish the contribution of wind, tides, waves, and wave-current interactions (WCI) on the storm surge height. Results show that the wind-driven setup is the dominant contributor to the storm surge height during cyclonic events. Based on the tidal phase and wind direction, the interaction between tide and wind can increase or decrease the magnitude of the storm surge height. Finally, considering the wind-driven wave may increase the surge height up to 0.3 m along the coastline through a strong wave setup.
Audience Academic
Author Wang, Xiao Hua
Salcedo-Castro, Julio
Ritchie, Elizabeth A.
Elahi, Md Wasif E
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  givenname: Md Wasif E
  orcidid: 0000-0002-9809-0037
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  orcidid: 0000-0002-1774-6189
  surname: Wang
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  givenname: Julio
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  fullname: Salcedo-Castro, Julio
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  givenname: Elizabeth A.
  orcidid: 0000-0002-3413-5830
  surname: Ritchie
  fullname: Ritchie, Elizabeth A.
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Snippet The Ganges–Brahmaputra–Meghna Delta (GBMD) located in the head of the Bay of Bengal is regularly affected by severe tropical cyclones frequently. The GBMD...
The Ganges-Brahmaputra-Meghna Delta (GBMD) located in the head of the Bay of Bengal is regularly affected by severe tropical cyclones frequently. The GBMD...
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SubjectTerms Analysis
Australia
Bangladesh
Barotropic mode
Coasts
Configuration management
cyclone
Cyclones
Emergency communications systems
Friction
Ganges-Brahmaputra-Meghna delta
Height
Hurricanes
Influence
Mathematical models
Netherlands
Ocean circulation
Ocean currents
ocean modelling
Radiation
storm surge
Storm surges
Storms
Three dimensional models
Tidal waves
tides
Tropical cyclones
Water levels
Wave power
wave-current interaction
Weather
Wind
Wind direction
Title Influence of Wave–Current Interaction on a Cyclone-Induced Storm Surge Event in the Ganges–Brahmaputra–Meghna Delta: Part 1—Effects on Water Level
URI https://www.proquest.com/docview/2779520028
https://doaj.org/article/a1f22d777c31456b8abd2100836fc4bd
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