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High radar-backscatter regions on Antarctic sea-ice and their relation to sea-ice and snow properties and meteorological conditions

机译:南极海冰上的高雷达后向散射区及其与海冰和积雪性质及气象条件的关系

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摘要

The temporal and spatial variability of sea-ice radar signatures in the Southern Ocean during late winter, spring and early summer from QuikSCAT data is presented. We observe a circumpolar and broad band of sea-ice close to the marginal ice zone that is characterized by very high radar backscatter. This feature is explained through detailed in situ observations of snow and sea-ice properties as well as in relation to meteorological conditions, which were derived from US National Center for Environmental Prediction (NCEP)/National Center for Atmospheric Research (NCAR) reanalysis data. Our results indicate that high backscatter regions are caused by metamorphous snow, which forms through re-freezing after short-term melt events. This process is connected with the episodic passes of low-pressure systems entraining warmer air from the north. South of the Antarctic Circumpolar Trough, sea-ice is not affected by this influence and shows spatially homogenous microwave signatures with low backscatter.
机译:根据QuikSCAT数据,介绍了南海冬季,春季和初夏期间南冰洋海冰雷达信号的时空变化。我们在边缘冰区附近观察到了一个极极且宽广的海冰带,其特征是雷达背向散射非常高。这项功能是通过对雪和海冰特性以及与气象条件相关的详细原位观测资料来解释的,这些观测资料来自美国国家环境预测中心(NCEP)/国家大气研究中心(NCAR)重新分析数据。我们的结果表明,高反向散射区域是由变质雪引起的,变质雪是在短期融化事件后通过重新冻结形成的。这个过程与低压系统的间歇性传热有关,这些低压系统会夹带来自北方的温暖空气。在南极圆极槽以南,海冰不受此影响,并且显示出空间均匀的微波特征,而后向散射较低。

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