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Wave Hindcast for the Neighbouring Seas of Korea Based on Loosely Coupled Wave-Tide-Surge Model
作者姓名:CHOIByung-Ho  EUMHyun-Min  JEONSang-Soo
作者单位:Department of Civil and Environmental Engineering,Sungkyunkwan University,Department of Civil and Environmental Engineering,Sungkyunkwan University,Department of Civil and Environmental Engineering,Sungkyunkwan University Suwon 440-746,Korea,Suwon 440-746,Korea,Suwon 440-746,Korea
摘    要:A hindcast simulation of 75 typhoons and winter monsoons which affected the coastal areas of Korean Peninsula is performed by use of a third generation ocean wave prediction model, WAM-cycle 4 model, loosely coupled with a com-bined tide and surge model. Typhoon wind fields are derived from the planetary marine boundary layer model for effective neutral winds embedding the vortical storm wind from the parameterized Rankin vortex type model in the limited areas of the overall modeled region. The hindcasted results illustrate that significant wave heights (SWH) considering the wave-tide-surge coupled process are significantly different from the results via the decoupled case especially in the region of the estuaries of the Changjiang Estuary, The Hangzhou Bay, and the southwestern tip of Korean Peninsula. This extensive model simulation is the first attempt to investigate the strong wave-tide-surge interaction for the shallow depth area along the coasts of the Yellow Sea and the East China Sea Continental


Wave Hindcast for the Neighbouring Seas of Korea Based on Loosely Coupled Wave-Tide-Surge Model
CHOIByung-Ho,EUMHyun-Min,JEONSang-Soo.Wave Hindcast for the Neighbouring Seas of Korea Based on Loosely Coupled Wave-Tide-Surge Model[J].China Ocean Engineering,2002,16(2):165-181.
Authors:CHOI Byung-Ho EUM Hyun-Min JEON Sang-Soo
Institution:Department of Civil and Environmental Engineering, Sungkyunkwan University, Suwon 440 -746, Korea Department of Civil and Environmental Engineering, Sungkyunkwan University, Suwon 440 -746, Korea Department of Civil and Environmental Engineering, Sungkyunkwan University, Suwon 440 -746, Korea
Abstract:A hindcast simulation of 75 typhoons and winter monsoons which affected the coastal areas of Korean Peninsula is performed by use of a third generation ocean wave prediction model, WAM-cycle 4 model, loosely coupled with a com-bined tide and surge model. Typhoon wind fields are derived from the planetary marine boundary layer model for effective neutral winds embedding the vortical storm wind from the parameterized Rankin vortex type model in the limited areas of the overall modeled region. The hindcasted results illustrate that significant wave heights (SWH) considering the wave-tide-surge coupled process are significantly different from the results via the decoupled case especially in the region of the estuaries of the Changjiang Estuary, The Hangzhou Bay, and the southwestern tip of Korean Peninsula. This extensive model simulation is the first attempt to investigate the strong wave-tide-surge interaction for the shallow depth area along the coasts of the Yellow Sea and the East China Sea Continental shelf.
Keywords:wave hindcast  mave-tide-surge process  loosely coupled model  significant wave height
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