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Propagation of subinertial variations in the Soya Warm Current revealed by HF ocean radars

机译:HF海洋雷达揭示的大豆暖流亚惯性变化的传播

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Propagation of subinertial variations in the Soya Warm Current (SWC), which flows through the Soya Strait located between Hokkaido, Japan and Sakhalin Island, Russia, is investigated using data from HF ocean radars together with in situ observations, such as bottom-mounted acoustic Doppler current profilers (ADCPs) and coastal tide gauges. The subinertial variations with periods from 5 to 20 days were captured by the HF radars. The subinertial variations were significantly correlated with the meridional wind stress component over the region, suggesting that the sea level difference through the strait caused by wind-generated coastally-trapped waves on the east coast of Sakhalin and west coast of Hokkaido are considered to be a possible mechanism casing the subinertial variations in the SWC. Propagation of the subinertial variations was also clearly captured by the HF radars. The estimated phase velocity suggests that the subinertial variations propagate downstream along the coast as the 3rd-mode barotropic continental shelf waves.
机译:流经位于日本北海道和俄罗斯萨哈林岛之间的大豆海峡的大豆暖流(SWC)的亚惯性变化的传播,是使用HF海洋雷达的数据以及现场观测(如底部安装的声波)进行调查的多普勒电流剖面仪(ADCP)和沿海潮汐仪。 HF雷达捕获了5至20天周期内的亚惯性变化。亚微分的变化与该地区的子午风应力分量显着相关,这表明由萨哈林岛东海岸和北海道西海岸的风生沿海海浪引起的海峡两岸的海平面差异被认为是一个海平面差异。 SWC中亚惯性变化的可能机制。 HF雷达也清楚地捕获了亚惯性变化的传播。估计的相速度表明,亚惯性变化随着第三模式正压大陆架波沿海岸向下游传播。

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