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Local amplification of storm surge by Super Typhoon Haiyan in Leyte Gulf.


ABSTRACT: Typhoon Haiyan, which struck the Philippines in November 2013, was an extremely intense tropical cyclone that had a catastrophic impact. The minimum central pressure of Typhoon Haiyan was 895?hPa, making it the strongest typhoon to make landfall on a major island in the western North Pacific Ocean. The characteristics of Typhoon Haiyan and its related storm surge are estimated by numerical experiments using numerical weather prediction models and a storm surge model. Based on the analysis of best hindcast results, the storm surge level was 5-6?m and local amplification of water surface elevation due to seiche was found to be significant inside Leyte Gulf. The numerical experiments show the coherent structure of the storm surge profile due to the specific bathymetry of Leyte Gulf and the Philippines Trench as a major contributor to the disaster in Tacloban. The numerical results also indicated the sensitivity of storm surge forecast.

SUBMITTER: Mori N 

PROVIDER: S-EPMC4373162 | biostudies-literature | 2014 Jul

REPOSITORIES: biostudies-literature

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Local amplification of storm surge by Super Typhoon Haiyan in Leyte Gulf.

Mori Nobuhito N   Kato Masaya M   Kim Sooyoul S   Mase Hajime H   Shibutani Yoko Y   Takemi Tetsuya T   Tsuboki Kazuhisa K   Yasuda Tomohiro T  

Geophysical research letters 20140725 14


Typhoon Haiyan, which struck the Philippines in November 2013, was an extremely intense tropical cyclone that had a catastrophic impact. The minimum central pressure of Typhoon Haiyan was 895 hPa, making it the strongest typhoon to make landfall on a major island in the western North Pacific Ocean. The characteristics of Typhoon Haiyan and its related storm surge are estimated by numerical experiments using numerical weather prediction models and a storm surge model. Based on the analysis of bes  ...[more]

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