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首页> 外文期刊>Geophysical Research Letters >Greenland ice sheet melt from MODIS and associated atmospheric variability
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Greenland ice sheet melt from MODIS and associated atmospheric variability

机译:来自MODIS的格陵兰冰盖融化及相关的大气变化

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Daily June-July melt fraction variations over the Greenland ice sheet (GIS) derived from the Moderate Resolution Imaging Spectroradiometer (MODIS) (2000-2013) are associated with atmospheric blocking forming an omega-shape ridge over the GIS at 500 hPa height. Blocking activity with a range of time scales, from synoptic waves breaking poleward (<5 days) to full-fledged blocks (≥5 days), brings warm subtropical air masses over the GIS controlling daily surface temperatures and melt. The temperature anomaly of these subtropical air mass intrusions is also important for melting. Based on the years with the greatest melt (2002 and 2012) during the MODIS era, the area-average temperature anomaly of 2 standard deviations above the 14 year June-July mean results in a melt fraction of 40% or more. Though the summer of 2007 had the most blocking days, atmospheric temperature anomalies were too small to instigate extreme melting.
机译:由中等分辨率成像光谱仪(MODIS)(2000-2013)得出的格陵兰冰原(GIS)上6月至7月的每日熔融分数变化与大气阻塞有关,在500 hPa高度时,GIS上方形成了欧米伽形状的山脊。从极向海破裂的极短波(<5天)到成熟的块体(≥5天),阻隔活动的时间范围很广,使GIS上的亚热带温暖气团控制着日常的地表温度和融化。这些亚热带气团侵入的温度异常对于融化也很重要。根据MODIS时代的最高融化年份(2002年和2012年),高于14年6月至7月平均值的2个标准差的区域平均温度异常导致融化分数达到40%或更高。尽管2007年夏季是最阻塞的日子,但大气温度异常太小,无法引发极端融化。

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