首页> 外文期刊>Polar Research >Comparison of snow accumulation events on two High-Arctic glaciers to model-derived and observed precipitation
【24h】

Comparison of snow accumulation events on two High-Arctic glaciers to model-derived and observed precipitation

机译:两次高北极冰川对模型衍生和观察降水的雪积累事件的比较

获取原文
           

摘要

We evaluate how precipitation forcing data used in glacier mass balance models characterize snow accumulation events on synoptic timescales for two glaciers in north-western Svalbard (Kongsvegen and Holtedahlfonna). Using sonic ranger (snow depth) and wind speed data from automatic weather stations located on the glaciers, we distinguish accumulation events occurring under either calm or windy conditions. We show clear differences in the timing and magnitude of snow accumulation events between the two neighbouring glaciers, illustrating the spatial heterogeneity of snow accumulation in this region. The accumulation measurements show that at equivalent elevations, Kongsvegen receives more snowfall than neighbouring Holtedahlfonna, and that Kongsvegen is more affected by wind-driven snow redistribution than Holtedahlfonna. This is consistent with the synoptically-driven precipitation patterns in the region. Accumulation events are then compared to precipitation data from the nearest meteorological station in Ny-?lesund (ca. 30 km distant) and to a downscaled snowfall data product based on the ERA-Interim reanalysis (nearest gridpoint ca. 300 m distant). Evaluation of the synchrony of observed events at the glacier sites and the precipitation products shows that the ERA-Interim precipitation data reproduce more snowfall events than the Ny-?lesund station data, suggesting that the precipitation fields from distributed reanalysis data provide a more reasonable representation of accumulation on the study glaciers, even over short timescales.
机译:我们评估冰川大规模平衡模型中使用的降水迫使数据如何表征北西斯瓦尔巴特(Kongsvegen和Holtedahlfonna)两种冰川的舞台蓄积事件。使用位于冰川上的自动气象站的Sonic Ranger(雪深)和风速数据,我们区分在平静或风力条件下发生的积累事件。我们展示了两个相邻冰川之间的积雪事件的时序和程度的清晰差异,示出了该地区积雪的空间异质性。累积测量显示,在等效的高度,Kongsvegen超过比邻近Holtedahlfonna接收更多的降雪,并且孔舍尔被风力驱动的雪再分配比Holtedahlfonna更多。这与该区域中的略微驱动的降水模式一致。然后将累积事件与来自NY-的最近气象站的降水数据进行比较,基于Era-Instim Reanysis(最近的Gridpointa 300米遥控器)和基于最近的降雪数据产品的降水数据。评估冰川地点和降水产品的观察事件同步表明,ERA-临时降水数据再现比NY-?Lesund站数据更加降雪事件,表明来自分布式再分析数据的降水场提供更合理的表示即使在短时间间,也会积累在研究冰川上。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号