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Can polar lows lead to a warming of the ocean surface?

机译:极地低谷会导致海洋表面变暖吗?

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Possible surface warming by strong wind-forcing from polar lows in the North-Atlantic has been investigated using a numerical model for vertical entrainment of waters from a subsurface warm core, and microwave satellite images of sea-surface temperature during polar low events. The hypothesis is based on the frequently observed subsurface warm core in oceans influenced by the North-Atlantic current (NAC) or by outflowing surface water from the Arctic Ocean. CTD-soundings from the Nordic Seas reveal that the waters from the NAC are located under colder and less saline surface waters in winter. For sufficiently strong wind events, turbulent entrainment of this subsurface warm core may lead to a rapid surface warming. Our main findings is that the surface warming of more than 1 ℃ may take place within a few hours. The result is based on model runs with initial temperature and salinity profiles from CTD-observations. Observational evidence of surface temperatures that support the hypothesis are found in microwave satellite observations from a polar low event. In the case presented here, increased sea-surface temperatures between 1 and 2 ℃ were observed. We believe that rapid surface warming of this magnitude may be a potential positive feedback mechanism for the cyclone intensity.
机译:已使用数值模型研究了来自地下暖芯的水的垂直夹带,并利用了极地低空事件期间海面温度的微波卫星图像,研究了北大西洋极地低气压强烈强风引起的可能的表面变暖。该假设基于受北大西洋海流(NAC)或北冰洋流出的地表水影响的海洋中常见的地下暖核。北欧海的CTD探测表明,NAC的水在冬季处于较冷且盐分较少的地表水之下。对于足够强的风事件,该地下暖芯的湍流夹带可能导致迅速的地面暖化。我们的主要发现是,表面加热可能会在数小时内超过1℃。结果是基于具有来自CTD观测的初始温度和盐度剖面的模型运行。在极地低空事件的微波卫星观测中发现了支持该假设的表面温度的观测证据。在这里介绍的情况下,观察到海面温度在1到2℃之间升高。我们认为,这种程度的快速表面变暖可能是旋风强度的潜在正反馈机制。

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