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东南极Lambert冰盆-Amery冰架区域雪面相对高程变化的精确监测 被引量:10
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作者 效存德 秦大河 +3 位作者 卞林根 周秀骥 i.allison 阎明 《中国科学(D辑)》 CSCD 北大核心 2004年第7期675-685,共11页
采用自动气象站对东南极冰盖Lambert冰盆-Amery冰架雪面相对高程(SSH)变化进行了连续监测,通过Argos卫星传输的逐时数据精确分析了冰盖LGB69地点和Amery冰架G3地点SSH的年内变化过程,2002年2月至2003年1月一个整年资料得出,LGB69全年... 采用自动气象站对东南极冰盖Lambert冰盆-Amery冰架雪面相对高程(SSH)变化进行了连续监测,通过Argos卫星传输的逐时数据精确分析了冰盖LGB69地点和Amery冰架G3地点SSH的年内变化过程,2002年2月至2003年1月一个整年资料得出,LGB69全年积累量为0.68m,与花杆网阵所得结果接近.10月至次年4月南极夏季为主要积累期,占全年SSH变化量的101.6%;5~9月南极冬季期间雪面高度几无变化,雪层密实化作用使之略有下降,为全年SSH变化量的~1.6%.LGB69和G3雪面上升主要由雪面突升事件导致,而且在LGB69较G3更频发.G3点每年有2~3次雪面突升事件,均发生在夏季,1999~2002年共发生8次明显突升事件.2002年LGB69点4次突升事件均伴随空气湿度增加和太阳总辐射下降,说明因降水过程导致.下降风对LGB69点SSH变化有正向作用,主要积累期风速的增大伴随着积雪增加,大于7m/s的吹雪临界风速引起表面高程的显著增加.因大风天气有时伴随降水过程,目前尚难于精确计算吹雪再堆积在全年物质积累中的百分比,但估计其贡献率在35%以上. 展开更多
关键词 南极冰盖 Lambert冰盆 AMERY冰架 积累率 下降风 雪面相对高程 雪面突升事件
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A precise monitoring of snow surface height in the region of Lambert Glacier basin-Amery Ice Shelf,East Antarctica 被引量:7
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作者 i.allison 《Science China Earth Sciences》 SCIE EI CAS 2005年第1期100-111,共12页
The net surface snow accumulation on the Antarctic ice sheet is determined by a combination of precipitation, sublimation and wind redistribution. We present a one-year record of hourly snow-height measurements at LGB... The net surface snow accumulation on the Antarctic ice sheet is determined by a combination of precipitation, sublimation and wind redistribution. We present a one-year record of hourly snow-height measurements at LGB69 (70°50'S, 77°04'E, 1850 m a.s.l.). east side of Lambert Glacier basin (LGB), and 4 year record at G3 (70°53'S, 69°52'E, 84 m a.s.l.), Amery Ice Shelf (AIS). The measurements were made with ultrasonic sensors mounted on automatic weather stations installed at two sites. The snow accumulation at LGB69 is approximately 70 cm. Throughout the winter, between April and September, there was little change in surface snow height (SSH) at the two sites. The negative SSH change is due to densification at LGB69, and is due to both ablation and densification at G3. The strongest accumulation at two sites occurred during the period between October and March (accounting for 101.6% at LGB69), with four episodic increasing events occurring during 2002 for LGB69, and eight events during 1999-2002 for G3 (2 to 3 events per year). At LGB69, these episodic events coincided with obvious humidity 'pulses' and decreases of incoming solar radiation as recorded by the AWS. Observations of the total cloud amount at Davis station, 160 km NNE of LGB69, showed good correlation with major accumulation events recorded at LGB69. There was an obvious anti-correlation between the lowest cloud height at Davis and the daily accumulation rate at LGB69. Although there was no correlation over the total year between wind speed and accumulation at LGB69, large individual accumulation events are associated with episodes of strong wind (>7 m/s), we estimate drift snow may contribute to total SSH up to 35%. Strong accumulation events at LGB69 are associated with major storms in the region and inland transport of moist air masses from the coast. 展开更多
关键词 Antarctica Lambert GLACIER basin Amery Ice Shelf accumulation katabatic wind.
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