Typhoon Storm Surge Simulation for Typhoon Haiyan OTHER

Title
Typhoon Storm Surge Simulation for Typhoon Haiyan
Alternative Title
Typhoon Storm Surge Simulation for Typhoon Haiyan
Author(s)
김경옥
KIOST Author(s)
Kim, Kyeong Ok(김경옥)
Publication Year
2015
Abstract
Typhoon Haiyan (local name, Yolanda) in November 2013 brought record-breaking meteorological forcing, surface winds of65 m/s and surface pressure of 895hPa at its maximum intensity, and made landfall over Samar Island, causing unprecedenteddisasters in the center of Philippines.   In this note, the numerical simulations for storm surge and wind waves, using unstructured mesh system are conducted. Theatmospheric input is computed by Holland wind model. The radius of maximum wind is estimated by the other informations byJMA. The storm surge and wind waves are simulated with ADCIRC and SWAN. Large domain including the whole track ofTyphoon Haiyan is constructed with triangular unstructured meshes, and results show the calculated storm surges of nearly 4 m inthe San Pedro and San Pablo Bay.eddisasters in the center of Philippines.   In this note, the numerical simulations for storm surge and wind waves, using unstructured mesh system are conducted. Theatmospheric input is computed by Holland wind model. The radius of maximum wind is estimated by the other informations byJMA. The storm surge and wind waves are simulated with ADCIRC and SWAN. Large domain including the whole track ofTyphoon Haiyan is constructed with triangular unstructured meshes, and results show the calculated storm surges of nearly 4 m inthe San Pedro and San Pablo Bay.
URI
https://sciwatch.kiost.ac.kr/handle/2020.kiost/2640
Bibliographic Citation
Journal of International Development and Cooperation, v.21, no.1, pp.17 - 25, 2015
Type
Article
Language
English
Related Researcher
Research Interests

Coastal Engineering,Marine Environment Model,Coastal Disaster Model,해안공학,해양환경모델링,해안재해모델

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