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Mesoscale structure of the central South China Sea detected by SCSMEX Buoy and Argo float

机译:南海中部中尺度构造由sCsmEX浮标和argo浮标探测

摘要

We addressed the mesoscale structure variation of the central South China Sea (SCS) with the measurements by a long-lived Argo float and a high-resolution ATLAS buoy during 1998-2002. T-S diagram indicates cooling and freshening events in 2000 and 2001 with lower salinity (0.5-0.8) and lower temperature (1-1.7A degrees C). Significant decrease in the net heat flux and increase in the precipitation suggest that the cooling and freshening is due to extra forcing by the atmosphere. Additional to large year-to-year changes, intraseasonal variability is moderate in the research area. The axis of the maximum intraseasonal temperature and salinity signals are mainly located on the thermocline. Typically, amplitude and period of intraseasonal temperature is about 2A degrees C and 40-60 days, and that of salinity is 0.3-0.5 and 35-60 days. Rapidly-changing winds, heat flux, and precipitation are critical in controlling the intraseasonal fluctuations of the mixed layer of the area. Studies on heat and freshwater balance in the mixed-layer further suggest that horizontal advection plays an important role in intraseasonal fluctuation in the upper ocean. In addition, the energetic mesoscale propagation radiated from the east boundary is linked to the intraseasonal variability in winter.
机译:我们用一个长寿命的Argo浮标和一个高分辨率的ATLAS浮标在1998-2002年间的测量结果来解决南海中部(SCS)的中尺度结构变化。 T-S图显示了2000年和2001年的降温和新鲜事件,盐度较低(0.5-0.8),温度较低(1-1.7A摄氏度)。净热通量的显着下降和降水的增加表明,冷却和清新是由于大气层的额外强迫造成的。除了较大的逐年变化外,研究区域内的季节内变异性中等。季节内最高温度和盐度信号的轴主要位于温跃层上。通常,季节内温度的幅度和周期约为2A摄氏度和40-60天,盐度的幅度和周期为0.3-0.5和35-60天。快速变化的风,热通量和降水对于控制该区域混合层的季节内波动至关重要。混合层中热量和淡水平衡的研究进一步表明,水平对流在上层海洋季节内波动中起着重要作用。此外,从东边界辐射出的高能中尺度传播与冬季的季节内变化有关。

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    Zeng LL; Wang DX; Du Y; Shi P;

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  • 年度 2010
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