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- W4281566345 abstract "An empirical method is developed to predict the counter-wind South China Sea Warm Current (SCSWC) using wind stress at a specific location that is built on the most dominant Empirical Orthogonal Function (EOF) mode of the Sea Surface Height (SSH), i.e. the Ekman mode (Yu et al., 2021). Based on the most dominant EOF modes from a 22-year HYbrid Coordinate Ocean Model (HYCOM) reanalysis, a rectangular box and a specific location are carefully chosen for SSH and wind stress, respectively. In the rectangular box (specific location), more than 90% of the SSH (wind stress) variance is explained by the most dominant EOF mode. SSH in the rectangular box is predicted from the wind stress at the specific location. When the average cross-shore pressure gradient force in the rectangular box is negative, the SCSWC exists in the model solution. The critical alongshore (38° to the north of east) wind stress at the specific location is −0.117 N/m2. The SCSWC occurs in the rectangular box when the wind further relaxes. The accuracy of this method varies from 74.9% to 75.3% and the representativeness varies from 84.5% to 85.9% with time lags from 12 to 16 h when applying the method to predict the SCSWC during the 21-winters in HYCOM reanalysis." @default.
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- W4281566345 date "2022-06-01" @default.
- W4281566345 modified "2023-10-02" @default.
- W4281566345 title "An empirical method for predicting the South China Sea Warm Current from wind stress using Ekman dynamics" @default.
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- W4281566345 doi "https://doi.org/10.1016/j.ocemod.2022.102030" @default.
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