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Extraordinary blowing snow transport events in East Antarctica

机译:南极洲东部的异常吹雪运输事件

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In the convergence slope/coastal areas of Antarctica, a large fraction of snow is continuously eroded and exported by wind to the atmosphere and into the ocean. Snow transport observations from instruments and satellite images were acquired at the wind convergence zone of Terra Nova Bay (East Antarctica) throughout 2006 and 2007. Snow transport features are well-distinguished in satellite images and can extend vertically up to 200 m as first-order quantitatively estimated by driftometer sensor FlowCapt?. Maximum snow transportation occurs in the fall and winter seasons. Snow transportation (drift/blowing) was recorded for ~ 80% of the time, and 20% of time recorded, the flux is >10~(-2) kg m~(-2) s~(-1) with particle density increasing withrnheight. Cumulative snow transportation is ~4 orders of magnitude higher than snow precipitation at the site. An increase in wind speed and transportation (~30%) was observed in 2007, which is in agreement with a reduction in observed snow accumulation. Extensive presence of ablation surface (blue ice and wind crust) upwind and downwind of the measurement site suggest that the combine processes of blowing snow sublimation and snow transport remove up to 50% of the precipitation in the coastal and slope convergence area. These phenomena represent a major negative effect on the snow accumulation, and they are not sufficiently taken into account in studies of surface mass balance. The observed wind-driven ablation explains the inconsistency between atmospheric model precipitation and measured snow accumulation value.
机译:在南极交汇处的斜坡/沿海地区,很大一部分积雪不断被侵蚀并通过风向大气和海洋输出。在2006年至2007年期间,在Terra Nova Bay(南极东部)的风汇聚区获得了通过仪器和卫星图像观测到的积雪运输情况。积雪的运输特征在卫星图像中有很好的区分,并且一阶可以垂直延伸至200 m。由漂移计传感器FlowCapt?定量估算。在秋季和冬季,雪的运输量最大。记录了约80%的时间的雪运输(漂移/吹扫),记录了20%的时间,通量> 10〜(-2)kg m〜(-2)s〜(-1),且具有颗粒密度随着高度的增加。积雪运输量比该地点的降雪量高约4个数量级。 2007年观测到风速和运输增加(〜30%),这与观测到的积雪减少有关。测量点上风和下风处广泛存在消融表面(蓝冰和风壳),这表明吹雪升华和雪运的结合过程最多可去除沿海和斜坡汇聚区的降水量的50%。这些现象代表了对积雪的主要负面影响,因此在研究表面质量平衡时并未充分考虑到这些现象。观测到的风蚀引起了大气模型降水与实测积雪值之间的不一致。

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