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Mindanao current/undercurrent in an eddy-resolving GCM

机译:mindanao在涡流分辨GCm中的当前/暗流

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摘要

Analysis of results from an eddy-resolving general circulation model showed two subsurface velocity cores in the mean within the depth range between 400 and 1000 m below the Mindanao Current (MC). One is confined to the inshore edge at about 126.8°E and connected with the Sulawesi Sea. The other takes place somewhat offshore around 127.7°E, being closely related to the intrusion of South Pacific water. Both cores are referred to as the Mindanao Undercurrent (MUC). The MC/MUC is approximately a geostrophic flow, except on the inshore edge of the MUC where up to 50% of the mean flow can be explained by ageostrophic dynamics. In contrast with the well-defined southward flowing MC, the MUC is of high velocity variance relative to the mean. Empirical orthogonal function (EOF) analysis shows that approximately 60% of the total velocity variance is associated with two meandering modes, with their major signatures in the subthermocline. The dominant time scale of variability is 50–100 days. An ensemble of these meso-scale fluctuations provides a northward freshwater flux on the offshore edge of the Philippine coast, which to a certain extent explains why water of South Pacific origin appears to extend farther northward than the mean MUC. In the offshore velocity core of the MUC, for example, eddy induced freshwater flux is equivalent to a mean flow of about 0.3 m s−1 in the density range between 26.9 and 27.3 kg m−3, which is greater than the mean current by a factor of 6.
机译:解析涡流的总体环流模型的结果分析显示,在棉兰老流(MC)下方400至1000 m的深度范围内,两个平均速度的地下岩心。一个被限制在约126.8°E的近海边缘,并与苏拉威西海相连。另一个发生在约127.7°E的近海处,与南太平洋水的入侵密切相关。两个岩心都称为棉兰老岛暗流(MUC)。 MC / MUC近似为地转流,但MUC的近海边缘除外,那里的年均流动力学可以解释为平均流的50%。与明确定义的向南流动的MC相反,MUC相对于平均值具有较高的速度变化。经验正交函数(EOF)分析表明,总速度方差的大约60%与两个曲折模式相关,两个曲折模式的主要特征在亚热线中。变异的主要时间尺度是50-100天。这些中尺度波动的集合在菲律宾海岸的近海边缘提供了北向的淡水通量,这在一定程度上解释了为什么南太平洋起源的水似乎比平均MUC向北延伸得更远。例如,在MUC的近海速度核心中,涡流感应的淡水通量在26.9和27.3 kg m-3之间的密度范围内相当于约0.3 ms-1的平均流量,比平均电流大一个系数为6。

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