Subinertial and seasonal variations in the Soya Warm Current revealed by HF ocean radars, coastal tide gauges, and bottom-mounted ADCP

被引:0
作者
Naoto Ebuchi
Yasushi Fukamachi
Kay I. Ohshima
Masaaki Wakatsuchi
机构
[1] Hokkaido University,Institute of Low Temperature Science
来源
Journal of Oceanography | 2009年 / 65卷
关键词
Soya Warm Current; Sea of Okhotsk; coastal current; HF radar; coastally trapped wave;
D O I
暂无
中图分类号
学科分类号
摘要
Subinertial and seasonal variations in the Soya Warm Current (SWC) are investigated using data obtained by high frequency (HF) ocean radars, coastal tide gauges, and a bottom-mounted acoustic Doppler current profiler (ADCP). The HF radars clearly captured the seasonal variations in the surface current fields of the SWC. Almost the same seasonal cycle was repeated in the period from August 2003 to March 2007, although interannual variations were also discernible. In addition to the annual and interannual variations, the SWC exhibited subinertial variations with a period of 5–20 days. The surface transport by the SWC was significantly correlated with the sea level difference between the Sea of Japan and Sea of Okhotsk for both the seasonal and subinertial variations, indicating that the SWC is driven by the sea level difference between the two seas. The generation mechanism of the subinertial variation is discussed using wind data from the European Centre for Medium-range Weather Forecasts (ECMWF) analyses. The subinertial variations in the SWC were significantly correlated with the meridional wind stress component over the region. The subinertial variations in the sea level difference and surface current delay from the meridional wind stress variations by one or two days. Sea level difference through the strait caused by wind-generated coastally trapped waves (CTWs) along the east coast of Sakhalin and west coast of Hokkaido is considered to be a possible mechanism causing the subinertial variations in the SWC.
引用
收藏
页码:31 / 43
页数:12
相关论文
共 92 条
[1]  
Aota M.(1975)Studies on the Soya Warm Current Low Temp. Sci., Ser. A 33 151-172
[2]  
Aota M.(1984)Oceanographic structure of the Soya Warm Current Bull. Coast. Oceanogr. 22 30-39
[3]  
Aota M.(1978)Observation of oceanographic condition in the Okhotsk Sea coast of Hokkaido in winter Low Temp. Sci., Ser. A 37 93-105
[4]  
Kawamura T.(1987)Tidal current fluctuations in the Soya Current J. Oceanogr. Soc. Japan 43 276-282
[5]  
Aota M.(1997)Evolution of bearing determination of HF current mapping radars Oceanography 10 72-75
[6]  
Matsuyama M.(1977)Ocean surface currents mapped by radar Science 198 138-144
[7]  
Barrick D. E.(2006)Observation of the Soya Warm Current using HF ocean radar J. Oceanogr. 62 47-61
[8]  
Lipa B. J.(2008)Volume transport of the Soya Warm Current revealed by bottom-mounted ADCP and ocean-radar measurement J. Oceanogr. 64 385-392
[9]  
Barrick D. E.(1974)The generation of long shelf waves by the wind J. Phys. Oceanogr. 4 83-90
[10]  
Evans M. W.(1985)On the data processing of daily mean values of oceanographic data.—Note on the daily mean sea-level data— Bull. Coast. Oceanogr. 23 79-87