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Chen Zhan,Zhang Zhaoshun. 1992. Numerical calculation of drift current in wind waves. Acta Oceanologica Sinica, (2):179-188
Numerical calculation of drift current in wind waves
Numerical calculation of drift current in wind waves
Received:April 10, 1990  Revised:May 15, 1991
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Author NameAffiliation
Chen Zhan National Research Center for Marine Environment Forecasts, State Oceanic Administration, Beijing, China 
Zhang Zhaoshun Department of Engineering Mechanic, Tsinghua University, Beijing, China 
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Abstract:
      Drift current induced by wind and waves is investigated with phase-averaged Navier-Stokes equation in which the Reynolds stress is closed by k-ε model. The governing equations are solved by the finite volume method in a system of nonorthogonal coordinates which is fitted to the phase-averaged wave surface. The predicted drift current is fairly reasonable and the drag coefficient of sea-surface predicted with the newly developed interface conditions shows good agreement with previous measurements when breaking waves do not exist.
中文摘要:
      Drift current induced by wind and waves is investigated with phase-averaged Navier-Stokes equation in which the Reynolds stress is closed by k-ε model. The governing equations are solved by the finite volume method in a system of nonorthogonal coordinates which is fitted to the phase-averaged wave surface. The predicted drift current is fairly reasonable and the drag coefficient of sea-surface predicted with the newly developed interface conditions shows good agreement with previous measurements when breaking waves do not exist.
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