Sugimoto Shusaku, Aono Kenji, Fukui Shin
Frontier Research Institute for Interdisciplinary Sciences, Tohoku University, Sendai, 980-8578, Japan.
Department of Geophysics, Graduate School of Science, Tohoku University, Sendai, 980-8578, Japan.
Sci Rep. 2017 Sep 19;7(1):11871. doi: 10.1038/s41598-017-12206-9.
In the extratropical regions, surface winds enhance upward heat release from the ocean to atmosphere, resulting in cold surface ocean: surface ocean temperature is negatively correlated with upward heat flux. However, in the western boundary currents and eddy-rich regions, the warmer surface waters compared to surrounding waters enhance upward heat release-a positive correlation between upward heat release and surface ocean temperature, implying that the ocean drives the atmosphere. The atmospheric response to warm mesoscale ocean eddies with a horizontal extent of a few hundred kilometers remains unclear because of a lack of observations. By conducting regional atmospheric model experiments, we show that, in the Kuroshio-Oyashio Confluence region, wintertime warm eddies heat the marine atmospheric boundary layer (MABL), and accelerate westerly winds in the near-surface atmosphere via the vertical mixing effect, leading to wind convergence around the eastern edge of eddies. The warm-eddy-induced convergence forms local ascending motion where convective precipitation is enhanced, providing diabatic heating to the atmosphere above MABL. Our results indicate that warm eddies affect not only near-surface atmosphere but also free atmosphere, and possibly synoptic atmospheric variability. A detailed understanding of warm eddy-atmosphere interaction is necessary to improve in weather and climate projections.
在温带地区,地表风增强了海洋向大气的向上热量释放,导致海洋表层变冷:海洋表层温度与向上热通量呈负相关。然而,在西部边界流和富含涡旋的区域,与周围水域相比,较暖的表层海水增强了向上热量释放——向上热量释放与海洋表层温度呈正相关,这意味着海洋驱动着大气。由于缺乏观测数据,大气对水平范围达数百公里的暖中尺度海洋涡旋的响应仍不清楚。通过进行区域大气模型实验,我们发现,在黑潮-亲潮汇合区,冬季暖涡加热海洋大气边界层(MABL),并通过垂直混合效应加速近地表大气中的西风,导致涡旋东部边缘周围出现风汇聚。暖涡引起的汇聚形成局部上升运动,增强对流降水,为MABL上方的大气提供非绝热加热。我们的结果表明,暖涡不仅影响近地表大气,还影响自由大气,可能还会影响天气尺度的大气变率。要改进天气和气候预测,详细了解暖涡与大气的相互作用是必要的。