Impact of Tidal Phase on Inundation and Thrust Force Due to Storm Surge

Impact of storm surge largely varies depending on the tidal phase during the landfall of a tropical cyclone. This study investigates comparative variance in inundation condition and thrust force for an identical cyclone during low tide and high tide by applying a numerical model (Delft3D) and a semi...

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Main Authors: A. S. M. Alauddin Al Azad, Kazi Samsunnahar Mita, Md. Wasif Zaman, Marin Akter, Tansir Zaman Asik, Anisul Haque, Mohammad Asad Hussain, Md. Munsur Rahman
Format: Article
Language:English
Published: MDPI AG 2018-09-01
Series:Journal of Marine Science and Engineering
Subjects:
Online Access:http://www.mdpi.com/2077-1312/6/4/110
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spelling doaj-5a00fd04b131405dbdb129638b1bbc592021-04-02T15:09:07ZengMDPI AGJournal of Marine Science and Engineering2077-13122018-09-016411010.3390/jmse6040110jmse6040110Impact of Tidal Phase on Inundation and Thrust Force Due to Storm SurgeA. S. M. Alauddin Al Azad0Kazi Samsunnahar Mita1Md. Wasif Zaman2Marin Akter3Tansir Zaman Asik4Anisul Haque5Mohammad Asad Hussain6Md. Munsur Rahman7Institute of Water and Flood Management, Bangladesh University of Engineering and Technology (BUET), Dhaka 1000, BangladeshInstitute of Water and Flood Management, Bangladesh University of Engineering and Technology (BUET), Dhaka 1000, BangladeshInstitute of Water and Flood Management, Bangladesh University of Engineering and Technology (BUET), Dhaka 1000, BangladeshInstitute of Water and Flood Management, Bangladesh University of Engineering and Technology (BUET), Dhaka 1000, BangladeshInstitute of Water and Flood Management, Bangladesh University of Engineering and Technology (BUET), Dhaka 1000, BangladeshInstitute of Water and Flood Management, Bangladesh University of Engineering and Technology (BUET), Dhaka 1000, BangladeshInstitute of Water and Flood Management, Bangladesh University of Engineering and Technology (BUET), Dhaka 1000, BangladeshInstitute of Water and Flood Management, Bangladesh University of Engineering and Technology (BUET), Dhaka 1000, BangladeshImpact of storm surge largely varies depending on the tidal phase during the landfall of a tropical cyclone. This study investigates comparative variance in inundation condition and thrust force for an identical cyclone during low tide and high tide by applying a numerical model (Delft3D) and a semi-analytical model (DFM). A moderate strength cyclone, Mora, which made landfall on Bangladesh coast in May 2017 is selected to study its impact on land during low tide and high tide. Actual landfall time of Mora was during low tide. To study the impact of storm surge during high tide, a synthetic cyclone is created which has similar strength and track to that of Mora but makes landfall during high tide. The results show that inundation depth, inundation extent, and thrust force increase when a cyclone makes landfall during high tide compared to the condition when the cyclone makes landfall during low tide. But the relation between storm surge impact and tidal phase is not linear. It depends on the land topography of the location, direction of cyclone movement, direction and magnitude of water velocity and wind velocity, gradients of water surface and wind velocity, and proximity and position of the location with respect to cyclone track.http://www.mdpi.com/2077-1312/6/4/110tropical cyclonestorm surgetidal phaseinundationthrust force
collection DOAJ
language English
format Article
sources DOAJ
author A. S. M. Alauddin Al Azad
Kazi Samsunnahar Mita
Md. Wasif Zaman
Marin Akter
Tansir Zaman Asik
Anisul Haque
Mohammad Asad Hussain
Md. Munsur Rahman
spellingShingle A. S. M. Alauddin Al Azad
Kazi Samsunnahar Mita
Md. Wasif Zaman
Marin Akter
Tansir Zaman Asik
Anisul Haque
Mohammad Asad Hussain
Md. Munsur Rahman
Impact of Tidal Phase on Inundation and Thrust Force Due to Storm Surge
Journal of Marine Science and Engineering
tropical cyclone
storm surge
tidal phase
inundation
thrust force
author_facet A. S. M. Alauddin Al Azad
Kazi Samsunnahar Mita
Md. Wasif Zaman
Marin Akter
Tansir Zaman Asik
Anisul Haque
Mohammad Asad Hussain
Md. Munsur Rahman
author_sort A. S. M. Alauddin Al Azad
title Impact of Tidal Phase on Inundation and Thrust Force Due to Storm Surge
title_short Impact of Tidal Phase on Inundation and Thrust Force Due to Storm Surge
title_full Impact of Tidal Phase on Inundation and Thrust Force Due to Storm Surge
title_fullStr Impact of Tidal Phase on Inundation and Thrust Force Due to Storm Surge
title_full_unstemmed Impact of Tidal Phase on Inundation and Thrust Force Due to Storm Surge
title_sort impact of tidal phase on inundation and thrust force due to storm surge
publisher MDPI AG
series Journal of Marine Science and Engineering
issn 2077-1312
publishDate 2018-09-01
description Impact of storm surge largely varies depending on the tidal phase during the landfall of a tropical cyclone. This study investigates comparative variance in inundation condition and thrust force for an identical cyclone during low tide and high tide by applying a numerical model (Delft3D) and a semi-analytical model (DFM). A moderate strength cyclone, Mora, which made landfall on Bangladesh coast in May 2017 is selected to study its impact on land during low tide and high tide. Actual landfall time of Mora was during low tide. To study the impact of storm surge during high tide, a synthetic cyclone is created which has similar strength and track to that of Mora but makes landfall during high tide. The results show that inundation depth, inundation extent, and thrust force increase when a cyclone makes landfall during high tide compared to the condition when the cyclone makes landfall during low tide. But the relation between storm surge impact and tidal phase is not linear. It depends on the land topography of the location, direction of cyclone movement, direction and magnitude of water velocity and wind velocity, gradients of water surface and wind velocity, and proximity and position of the location with respect to cyclone track.
topic tropical cyclone
storm surge
tidal phase
inundation
thrust force
url http://www.mdpi.com/2077-1312/6/4/110
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