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High resolution snow distribution data from complex Arctic terrain: a tool for model validation

机译:来自复杂北极地形的高分辨率雪分布数据:模型验证的工具

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Blowing snow and snow drifts are common features in the Arctic. Due to sparse vegetation, low temperatures and high wind speeds, the snow is constantly moving. This causes severe problems for transportation and infrastructure in the affected areas. To minimise the effect of drifting snow already in the designing phase of new structures, adequate models have to be developed and tested. In this study, snow distribution in Arctic topography is surveyed in two study areas during the spring of 1999 and 2000. Snow depth is measured by ground penetrating radar and manual methods. The study areas encompass four by four kilometres and are partly glaciated. The results of the surveys show a clear pattern of erosion, accumulation areas and the evolution of the snow cover over time. This high resolution data set is valuable for the validation of numerical models. A simple numerical snow drift model was used to simulate the measured snow distribution in one of the areas for the winter of 1998/1999. The model is a two-level drift model coupled to the wind field, generated by a mesoscale meteorological model. The simulations are based on five wind fields from the dominating wind directions. The model produces a satisfying snow distribution but fails to reproduce the details of the observed snow cover. The results clearly demonstrate the importance of quality field data to detect and analyse errors in numerical simulations.
机译:吹雪和雪漂移是北极的常见功能。由于稀疏植被,低温和高风速,雪正在不断移动。这导致受影响地区运输和基础设施的严重问题。为了最大限度地减少已经在新结构的设计阶段漂移的漂移的效果,必须开发和测试足够的模型。在这项研究中,在1999年春季的两项研究领域调查了北极地形中的雪分布。通过地面穿透雷达和手动方法来测量雪深。该研究领域包含四个乘4公里,部分冰川。调查结果显示出清晰的侵蚀,积聚区域和雪覆盖的演变随时间的透明模式。该高分辨率数据集对于数值模型的验证是有价值的。简单的数字雪漂移模型用于模拟1998/1999年冬季领域的测量雪分布。该模型是由Mescle气象模型产生的耦合到风场的两级漂移模型。模拟基于来自主导风向的五个风场。该模型产生满足的雪分布,但不能再现观察到的雪覆盖的细节。结果清楚地证明了质量现场数据的重要性来检测和分析数值模拟中的错误。

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