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Co-variation of the surface wind speed and the sea surface temperature over mesoscale eddies in the Gulf Stream region:momentum vertical mixing aspect

机译:湾流地区中尺度涡旋上的地表风速和海面温度的协变:动量垂直混合方面

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摘要

The co-variation of surface wind speed and sea surface temperature (SST) over the Gulf Stream frontal region is investigated using high-resolution satellite measurements and atmospheric reanalysis data. Results show that the pattern of positive SST-surface wind speed correlations is anchored by strong SST gradient and marine atmospheric boundary layer (MABL) height front, with active warm and cold-ocean eddies around. The MABL has an obvious transitional structure along the strong SST front, with greater (lesser) heights over the north (south) side. The significant positive SST-surface wind-speed perturbation correlations are mostly found over both strong warm and cold eddies. The surface wind speed increases (decreases) about 0.32 (0.41) m/s and the MABL elevates (drops) approximate 55 (54) m per 1°C of SST perturbation induced by warm (cold) eddies. The response of the surface wind speed to SST perturbations over the mesoscale eddies is mainly attributed to the momentum vertical mixing in the MABL, which is confirmed by the linear relationships between the downwind (crosswind) SST gradient and wind divergence (curl).
机译:使用高分辨率卫星测量和大气再分析数据,研究了墨西哥湾流沿岸地区地表风速和海表温度(SST)的协变。结果表明,强SST梯度和海洋大气边界层(MABL)高度前缘固定了SST-表面风速正相关的模式,周围有活跃的冷热涡。 MABL沿强SST前沿具有明显的过渡结构,在北(南)侧的高度较高(较小)。强烈的SST-地表风速微扰正相关关系主要存在于强涡流和冷涡流上。每1°C由暖(冷)涡流引起的SST扰动,表面风速增加(减小)约0.32(0.41)m / s,并且MABL升高(下降)约55(54)m。在中尺度涡旋上,表面风速对SST扰动的响应主要归因于MABL中的动量垂直混合,这由顺风(侧风)SST梯度与风散度(卷曲)之间的线性关系确定。

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  • 来源
    《中国海洋湖沼学报(英文版)》 |2019年第4期|1154-1164|共11页
  • 作者

    HE Jingjing; LIN Xiaopei;

  • 作者单位

    Physical Oceanography Laboratory / CIMST, Ocean University of China and Qingdao National Laboratory for Marine Science and Technology, Qingdao 266003, China;

    Physical Oceanography Laboratory / CIMST, Ocean University of China and Qingdao National Laboratory for Marine Science and Technology, Qingdao 266003, China;

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