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Role of Mesoscale Eddies in Modulating the Semidiurnal Internal Tide: Observation Results in the Northern South China Sea

机译:中尺度涡旋在调节半日内潮中的作用:南海北部的观测结果

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The role of mesoscale eddies in modulating the semidiurnal internal tide (SIT) in the northern South China Sea (SCS) is examined using the data from a cross-shaped mooring array. From November 2013 to January 2014, an anticyclonic eddy (AE) and cyclonic eddy (CE) pair crossed the westward SIT beam originating in Luzon Strait. Observations showed that, because of the current and stratification modulations by the eddy pair, the propagation speed of the mode-1 SIT sped up (slowed down) by up to 0.7 m s(-1) (0.4 m s(-1)) within the AE's (CE's) southern portion. As a result of the spatially varying phase speed, the mode-1 SIT wave crest was clockwise rotated (counterclockwise rotated) within the AE (CE) core, while it exhibited convex and concave (concave and convex) patterns on the southern and northern peripheries of the AE (CE), respectively. In mid-to-late November, most of the mode-1 SIT energy was refracted by the AE away from Dongsha Island toward the north part of the northern SCS, which resulted in enhanced internal solitary waves (ISWs) there. Corresponding to the energy refraction, responses of the depth-integrated mode-1 SIT energy to the eddies were generally in phase at the along-beam-direction moorings but out of phase in the south and north parts of the northern SCS at the cross-beam-direction moorings. From late December to early January, intensified mode-2 SIT was observed, whose energy was likely transferred from the mode-1 SIT through eddy-wave interactions. The observation results reported here are helpful to improve the capability to predict internal tides and ISWs in the northern SCS.
机译:使用来自十字形系泊阵列的数据,研究了中尺度涡旋在南中国海北部(SCS)调节半日内潮(SIT)中的作用。从2013年11月到2014年1月,一对反气旋涡(AE)和气旋涡(CE)越过源自吕宋海峡的西向SIT光束。观测结果表明,由于涡流对的电流和分层调制,模式1 SIT的传播速度在波峰内加速了0.7毫秒(-1)(0.4毫秒(-1))。 AE(CE)的南部。由于空间速度的变化,模式1的SIT波峰在AE(CE)磁芯内顺时针旋转(逆时针旋转),而在南部和北部外围则显示出凸凹型(凹凸型)模式分别为AE(CE)。在11月中下旬,大部分模式1的SIT能量被AE从东沙岛向南SCS的北部折射,从而导致那里的内部孤立波(ISW)增强。对应于能量折射,深度积分模式1 SIT能量对涡流的响应通常在沿波束方向的系泊处同相,而在北部SCS的南部和北部则在相交处异相。梁方向系泊。从12月下旬到1月初,观测到模式2 SIT增强,其能量很可能通过涡波相互作用从模式1 SIT转移。此处报告的观测结果有助于提高预测南海北部海潮和ISW的能力。

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