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Upper Ocean Response to Typhoon Kalmaegi and Sarika in the South China Sea from Multiple-Satellite Observations and Numerical Simulations

机译:来自多卫星观测和数值模拟的南海的台风Kalmaegi和Sarika的上海反应

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摘要

We investigated ocean surface and subsurface physical responses to Typhoons Kalmaegi and Sarika in the South China Sea, utilizing synergistic multiple-satellite observations, in situ measurements, and numerical simulations. We found significant typhoon-induced sea surface cooling using satellite sea surface temperature (SST) observations and numerical model simulations. This cooling was mainly caused by vertical mixing and upwelling. The maximum amplitudes were 6 °C and 4.2 °C for Typhoons Kalmaegi and Sarika, respectively. For Typhoon Sarika, Argo temperature profile measurements showed that temperature response beneath the surface showed a three-layer vertical structure (decreasing-increasing-decreasing). Satellite salinity observations showed that the maximum increase of sea surface salinity (SSS) was 2.2 psu on the right side of Typhoon Sarika’s track, and the maximum decrease of SSS was 1.4 psu on the left. This SSS seesaw response phenomenon is related to the asymmetrical rainfall on both sides of the typhoon track. Acoustic Doppler Current Profilers measurements and numerical simulations both showed that subsurface current velocities rapidly increased as the typhoon passed, with peak increases of up to 1.19 m/s and 1.49 m/s. Typhoon-generated SST cooling and current velocity increases both exhibited a rightward bias associated with a coupling between typhoon wind-stress and mixed layer velocity.
机译:我们调查了海面和地下的身体反应,对南海的Typhoons Kalmaegi和Sarika,利用协同多卫星观测,原位测量和数值模拟。我们发现了使用卫星海表面温度(SST)观测和数值模拟的显着触摸海面冷却。这种冷却主要由垂直混合和升值引起。对于Typhoons Kalmaegi和Sarika,最大幅度分别为6°C和4.2°C。对于台风Sarika,ARGO温度曲线测量显示,表面下方的温度响应显示出三层垂直结构(减小递减)。卫星盐度观测结果表明,海面盐度(SSS)的最大增加在台风萨尔卡赛道的右侧是2.2psu,左侧的SSS最大减少为1.4 PSU。该SSS跷跷板反应现象与台风轨道两侧的不对称降雨有关。声学多普勒电流分析仪测量和数值模拟既显示,随着台风通过时,地下电流速度迅速增加,峰值增加高达1.19米/秒和1.49米/秒。台风产生的SST冷却和电流速度增加两者都表现出与台风风应力和混合层速度之间的耦合相关的向右偏压。

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