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Surface Heat Budgets and Sea Surface Temperature in the Pacific Warm Pool During TOGA COARE

机译:TOGA COARE期间太平洋暖池的地表热量收支和海面温度

摘要

The daily mean heat and momentum fluxes at the surface derived from the SSM/I and Japan's GMS radiance measurements are used to study the temporal and spatial variability of the surface energy budgets and their relationship to the sea surface temperature during the COARE intensive observing period (IOP). For the three time legs observed during the IOP, the retrieved surface fluxes compare reasonably well with those from the IMET buoy, RV Moana Wave, and RV Wecoma. The characteristics of surface heat and momentum fluxes are very different between the southern and northern warm pool. In the southern warm pool, the net surface heat flux is dominated by solar radiation which is, in turn, modulated by the two Madden-Julian oscillations. The surface winds are generally weak, leading to a shallow ocean mixed layer. The solar radiation penetrating through the bottom of the mixed layer is significant, and the change in the sea surface temperature during the IOP does not follow the net surface heat flux. In the northern warm pool, the northeasterly trade wind is strong and undergoes strong seasonal variation. The variation of the net surface heat flux is dominated by evaporation. The two westerly wind bursts associated with the Madden-Julian oscillations seem to have little effect on the net surface heat flux. The ocean mixed layer is deep, and the solar radiation penetrating through the bottom of the mixed layer is small. As opposed to the southern warm pool, the trend of the sea surface temperature in the northern warm pool during the IOP is in agreement with the variation of the net heat flux at the surface.
机译:由SSM / I和日本的GMS辐射度测量得出的地表每日平均热量和动量通量用于研究在COARE密集观测期间地表能量收支的时空变化及其与海面温度的关系( IOP)。对于在IOP期间观察到的三个时间段,所检索到的表面通量与IMET浮标,RV Moana Wave和RV Wecoma的通量相当。在南部和北部的暖池之间,地表热和动量通量的特性差异很大。在南部的暖池中,净表面热通量受太阳辐射的控制,而太阳辐射又由两个Madden-Julian振荡调制。地表风通常是弱的,导致浅海混合层。穿过混合层底部的太阳辐射很明显,IOP期间海面温度的变化不遵循净表面热通量。在北部暖池中,东北风偏强,且季节性变化很大。净表面热通量的变化主要由蒸发决定。与Madden-Julian振荡相关的两个西风爆发似乎对净表面热通量几乎没有影响。海洋混合层很深,穿透混合层底部的太阳辐射很小。与南部暖池相反,IOP期间北部暖池的海表温度趋势与地表净热通量的变化一致。

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