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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Satellite microwave observations of the interannual variability of snowmelt on sea ice in the Southern Ocean
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Satellite microwave observations of the interannual variability of snowmelt on sea ice in the Southern Ocean

机译:卫星微波观测南大洋冰上融雪的年际变化

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Snowmelt processes on Antarctic sea ice are examined. We present a simple snowmelt indicator based on diurnal brightness temperature variations from microwave satellite data. The method is validated through extensive field data from the western Weddell Sea and lends itself to the investigation of interannual and spatial variations of the typical snowmelt on Antarctic sea ice. We use in-situ measurements of physical snow properties to show that despite the absence of strong melting, the summer period is distinct from all other seasons with enhanced diurnal variations of snow wetness. A microwave emission model reveals that repeated thawing and refreezing cause the typical microwave emissivity signatures that are found on perennial Antarctic sea ice during summer. The proposed melt indicator accounts for the characteristic phenomenological stages of snowmelt in the Southern Ocean and detects the onset of diurnal snow wetting. An algorithm is presented to map large-scale snowmelt onset based on satellite data from the period between 1988 and 2006. The results indicate strong meridional gradients of snowmelt onset with the Weddell, Amundsen, and Ross Seas showing earliest (beginning of October) and most frequent snowmelt. Moreover, a distinct interannual variability of melt onset dates and large areas of first-year ice where no diurnal freeze thawing occurs at the surface are determined.
机译:研究了南极海冰上的融雪过程。我们根据微波卫星数据的日亮度温度变化,提出了一个简单的融雪指示器。该方法已通过来自韦德海西部的大量现场数据进行了验证,并有助于调查南极海冰上典型融雪的年际和空间变化。我们使用物理雪性质的原位测量结果显示,尽管没有强烈融化,但夏季期间与其他所有季节都不同,并且雪湿度的昼夜变化有所增强。微波发射模型表明,反复融化和重新冻结会导致夏季在多年生南极海冰上发现典型的微波发射率特征。拟议的融化指标解释了南大洋融雪的特征现象学阶段,并检测了日间降雪的开始。提出了一种算法,用于根据1988年至2006年之间的卫星数据绘制大规模融雪开始的地图。结果表明,在Weddell,Amundsen和Ross Seas出现的最早(十月初)和大部分出现的时候,融雪开始的强子午线梯度很强。经常融雪。此外,确定了融化开始日期和大面积的一年级冰的明显的年际变化,其中在地表没有发生昼夜的冻融。

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