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首页> 外文期刊>International Journal of Climatology: A Journal of the Royal Meteorological Society >Atmospheric moisture transport between mid-latitudes and the Arctic: Regional, seasonal and vertical distributions
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Atmospheric moisture transport between mid-latitudes and the Arctic: Regional, seasonal and vertical distributions

机译:中纬度和北极之间的大气水分运输:区域,季节性和垂直分布

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Horizontal moisture transport has a manifold role in the Arctic climate system as it distributes atmospheric water vapour and thereby shapes the radiative and hydrological conditions. Moisture transport between the Arctic and the mid-latitudes was examined based on ERA-Interim reanalysis. The meridional net transport is only a small part of the water vapour exchange between the Arctic and mid-latitudes and does not give a complete view of temporal and spatial variations in the transport. Especially near the surface, most of the northwards moisture transport is balanced by the southwards transport, and therefore the meridional net moisture transport at 60 degrees-70 degrees N peaks approximately at 100 hPa higher altitude than the northwards and southwards moisture transports. The total moisture transport (sum of absolute northwards and southwards moisture transports) has a much larger seasonal variation than the net transport (mean meridional transport), and the strength of the total transport is related to atmospheric humidity rather than the wind field. Strong individual moisture transport events contribute to a large part of the northwards moisture transport. This is consistent with the result that the net moisture transport is essentially generated by temporal variations of moisture fluxes. The moisture transport due to stationary zonal variation in the mass flux mostly defines the spatial distribution of the meridional moisture transport. The seasonal cycle of the net moisture transport is related to the seasonal cycle of transient eddy moisture transport but inter-annual variations of the net moisture transport are largely influenced by the stationary eddy moisture transport.
机译:水平水分运输在北极气候系统中具有歧管作用,因为它分配大气水蒸气,从而塑造辐射和水文条件。基于ERA-Instim Reanalysics检查了北极和中纬度之间的水分运输。子午线净运输只是北极和中纬度之间的水蒸汽交换的一小部分,并且不会完全看出运输中的时间和空间变化。特别是靠近表面,大部分北方水分运输都是由南向运输的平衡,因此在60度-70度N峰值的子午线净水分运输大约在100 HPA的高度高于北方和向南水分运输。总水分运输(绝对北方和南方水分运输的总和)具有比净运输(平均经络)(平均经络)更大的季节性变化,总运输的强度与大气湿度而非风场有关。强大的个体水分运输事件有助于北北的大部分水分运输。这与结果一致,即净水分运输基本上通过水分助熔剂的时间变化产生。由于质量磁通量的固定区域变化导致的水分运输主要是限定了子午线的空间分布。净水分运输的季节性循环与瞬时涡流运输的季节性循环有关,但净水分运输的年间变化主要受到固定涡流运输的影响。

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