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Estimating the spatial distribution of snow water equivalent and snowmelt in mountainous watersheds of semi-arid regions.

机译:估算半干旱地区山区流域的雪当量和融雪量的空间分布。

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The processes controlling snowpack mass balance are highly variable in time and space, requiring remote sensing to observe regional processes and intensive field observations to observe hillslope-scale phenomena. This research aims to further understanding of the processes controlling snowpack mass balance through innovative applications of remotely sensed data and statistical interpolations of ground observations. Four advancements were obtained: (1) the sensitivity of regression tree snow distribution models to digital elevation data and independent variables was quanitified; (2) improved ability to upscale point snow water equivalent (SWE) measurements at snow telemetry (SNOTEL) stations was obtained by quantifying the small-scale SWE variability surrounding these stations; (3) spatially distributed snowmelt algorithms were improved by incorporating remotely sensed snow-surface albedo data into snowmelt modeling; and (4) the temporal and spatial continuity of regional-scale estimates of snow covered area (SCA) and SWE were improved by combining remotely sensed data and air temperature data to extend estimates beneath the cloud cover.
机译:控制积雪质量平衡的过程在时间和空间上变化很大,需要遥感来观察区域过程,并需要进行密集的野外观察来观察坡度现象。这项研究旨在通过遥感数据和地面观测值的统计插值的创新应用,进一步了解控制积雪质量平衡的过程。获得了四个方面的进展:(1)量化了回归树积雪分布模型对数字高程数据和自变量的敏感性; (2)通过量化这些站点周围的小规模SWE变异性,提高了在雪遥测(SNOTEL)站点进行高档点雪水当量(SWE)测量的能力; (3)通过将遥感的雪面反照率数据纳入融雪模型来改进空间分布的融雪算法; (4)通过结合遥感数据和气温数据以将估计范围扩大到云层以下,改进了对积雪面积(SCA)和SWE的区域尺度估计的时间和空间连续性。

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