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Seasonal small-scale spatial variability in alpine snowfall and snow accumulation

机译:高山降雪和积雪的季节性小空间变异

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摘要

In mountainous regions, snow accumulation on the ground is crucial for mountain hydrology and water resources. The present study investigates the link between the spatial variability in snowfall and in snow accumulation in the Swiss Alps. A mobile polarimetric X-band radar deployed in the area of Davos (Switzerland) collected valuable and continuous information on small-scale precipitation for the winter seasons of 2009/2010 and 2010/2011. Local measurements of snow accumulation were collected with airborne laser-scanning for the winters of 2007/2008 and 2008/2009. The spatial distribution of snow accumulation exhibits a strong interannual consistency that can be generalized over the winters in the area. This unique configuration makes the comparison of the variability in total snowfall amount estimated from radar and in snow accumulation possible over the diverse winter periods. As expected, the spatial variability, quantified by means of the variogram, is shown to be larger in snow accumulation than in snowfall. However, the variability of snowfall is also significant, especially over the mountain tops, leads to preferential deposition during snowfall and needs further investigation. The higher variability at the ground is mainly caused by snow transport.
机译:在山区,地面积雪对山区水文和水资源至关重要。本研究调查了瑞士阿尔卑斯山降雪量与积雪量之间的空间联系。部署在达沃斯(瑞士)地区的移动极化X波段雷达收集了有关2009/2010年和2010/2011年冬季小规模降水的宝贵连续信息。在2007/2008年和2008/2009年冬季,通过机载激光扫描收集了积雪的局部数据。积雪的空间分布表现出很强的年际一致性,可以在该地区的冬季得到概括。这种独特的配置使得可以比较由雷达估算的总降雪量和在不同冬季期间积雪的变化。正如预期的那样,通过变异函数量化的空间变异性在积雪中比在降雪中更大。但是,降雪的变化性也很显着,尤其是在山顶上,导致降雪期间的优先沉积,需要进一步调查。地面较高的波动性主要是由雪运输引起的。

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  • 来源
    《Water resources research》 |2013年第3期|1446-1457|共12页
  • 作者单位

    Environmental Remote Sensing Laboratory (LTE), School of Architecture, Environmental and Civil Engineering (ENAC), Eeole Polytechnique Federale de Lausanne (EPFL), Lausanne, Switzerland,EPFL ENAC HE LTE, GR C2 565 (Batiment GR), Station 2, Lausanne CH-1015, Switzerland;

    WSL-Institute for Snow and Avalanche Research (SLF), Davos,Switzerland;

    WSL-Institute for Snow and Avalanche Research (SLF), Davos,Switzerland,Laboratory of Cryospheric Sciences (CRYOS), School of Architecture,Environmental and Civil Engineering (ENAC), Ecole Polytechnique Federale de Lausanne (EPFL), Lausanne, Switzerland;

    Environmental Remote Sensing Laboratory (LTE), School of Architecture, Environmental and Civil Engineering (ENAC), Eeole Polytechnique Federale de Lausanne (EPFL), Lausanne, Switzerland;

    Environmental Remote Sensing Laboratory (LTE), School of Architecture, Environmental and Civil Engineering (ENAC), Eeole Polytechnique Federale de Lausanne (EPFL), Lausanne, Switzerland;

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