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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Meteorological conditions in a thinner Arctic sea ice regime from winter to summer during the Norwegian Young Sea Ice expedition (N-ICE2015)
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Meteorological conditions in a thinner Arctic sea ice regime from winter to summer during the Norwegian Young Sea Ice expedition (N-ICE2015)

机译:在薄北冰洋的气象条件冰政权从冬季到夏季期间挪威的年轻海冰探险(N-ICE2015)

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Atmospheric measurements were made over Arctic sea ice north of Svalbard from winter to early summer (January-June) 2015 during the Norwegian Young Sea Ice (N-ICE2015) expedition. These measurements, which are available publicly, represent a comprehensive meteorological data set covering the seasonal transition in the Arctic Basin over the new, thinner sea ice regime. Winter was characterized by a succession of storms that produced short-lived (less than 48 h) temperature increases of 20 to 30 K at the surface. These storms were driven by the hemispheric scale circulation pattern with a large meridional component of the polar jet stream steering North Atlantic storms into the high Arctic. Nonstorm periods during winter were characterized by strong surface temperature inversions due to strong radiative cooling ("radiatively clear state"). The strength and depth of these inversions were similar to those during the Surface Heat Budget of the Arctic Ocean (SHEBA) campaign. In contrast, atmospheric profiles during the "opaquely cloudy state" were different to those from SHEBA due to differences in the synoptic conditions and location within the ice pack. Storm events observed during spring/summer were the result of synoptic systems located in the Barents Sea and the Arctic Basin rather than passing directly over N-ICE2015. These synoptic systems were driven by a large-scale circulation pattern typical of recent years, with an Arctic Dipole pattern developing during June. Surface temperatures became near-constant 0°C on 1 June marking the beginning of summer. Atmospheric profiles during the spring and early summer show persistent lifted temperature and moisture inversions that are indicative of clouds and cloud processes.
机译:大气在北冰洋进行了测量斯瓦尔巴特群岛北部的冰从冬天到初夏(上半年)2015年在挪威的年轻海冰(N-ICE2015)探险。可公开的测量,代表一个全面的气象数据集在北极覆盖季节性过渡盆地新,海冰变薄的政权。冬天是一个接一个的的特征风暴产生短暂的(不到48小时)20到30 K的温度上升表面。与半球范围内循环模式大极性的子午组件的喷气机流转向到北大西洋风暴高北极。特点是强烈的表面温度反演由于强烈的辐射冷却(“辐射明显状态”)。深度的反演是类似的在北极的表面热量平衡海洋(示)运动。配置文件在“不透明多云的状态”由于差异不同的示巴在天气条件和位置冰包。春/夏季天气系统的结果位于巴伦支海和北极盆地而不是直接传递N-ICE2015。这些天气系统是由一个驱动的最近大规模流通模式的典型年,北极的偶极子模式发展在6月。几乎0°C标志着6月1日开始夏天的。夏初,显示持续解除温度和湿度反演云和云过程的象征。

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