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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Satellite observations of sea surface temperature and sea surface wind coupling in the Japan Sea
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Satellite observations of sea surface temperature and sea surface wind coupling in the Japan Sea

机译:日本海中海面温度和海面风耦合的卫星观测

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摘要

We investigate ocean-atmosphere coupling in the Japan Sea by using microwave satellite measurements of sea surface temperature (SST) and sea surface wind from 1 June 2002 to 31 December 2004. First, it is observed that instantaneous wind speeds are modified by SST front meanders in widespread areas in the Japan Sea. Increased/reduced wind speeds are found over warmer/colder water. Then, we compute SST and wind speed anomalies by spatial high-pass filtering in order to present their time evolution along 132°E. SST and wind speed anomalies are negatively correlated off Vladivostok (>41°N) in winter. This is consistent with the interpretation that there is large turbulent heat flux loss due to the wind speed maximum off Vladivostok or the gap exit region of the northwesterly wind jet. However, except for this region in winter, we find strong positive correlation between SST and wind speed anomalies throughout the year at any latitudes. Wind speed anomalies are linearly related to SST anomalies. Meanwhile, we identify two pairs of positive and negative SST anomaly bands in the time-space structure of the Japan Sea and compare the band locations with meridional SST gradient magnitude. As a result, the two boundaries of the SST anomaly bands are associated with the Polar Front and the Tsushima Warm Current front. Additionally, it is found that discontinuous SST anomaly patches correspond to oceanic eddies. These results lead to the conclusion that sea surface winds over the Japan Sea come under the influence of those SST frontal systems.
机译:我们使用微波卫星测量了2002年6月1日至2004年12月31日的海面温度(SST)和海面风,研究了日本海中的海洋-大气耦合。首先,我们观察到瞬时风速受SST前曲折影响在日本海的广大地区在较暖/较冷的水中发现风速增加/减小。然后,我们通过空间高通滤波来计算SST和风速异常,以显示它们沿132°E的时间演变。冬季符拉迪沃斯托克(> 41°N)附近海表温度和风速异常呈负相关。这与以下解释一致:由于符拉迪沃斯托克(Hladivostok)或西北风喷射的间隙出口区域的最大风速,湍流热通量损失较大。但是,除了冬季这个地区,我们发现在任何纬度下,全年SST与风速异常之间都存在强正相关。风速异常与SST异常线性相关。同时,我们在日本海的时空结构中确定了两对正,负海温异常带,并将其位置与子午海温梯度幅度进行了比较。结果,SST异常带的两个边界与极地锋和对马暖流锋相关。另外,发现不连续的SST异常斑块对应于海洋涡。这些结果得出的结论是,日本海面上的海面风受到这些SST额叶系统的影响。

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