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VALIDATION OF A ONE-DIMENSIONAL SNOW-LAND SURFACE MODEL AT THE SLEEPERS RIVER WATERSHED

机译:LE河流域一维积雪陆面模型的验证

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摘要

A one-dimensional land surface model, based on conservations of heat and water substance inside the soil and snow, is presented. To validate the model, a stand-alone experiment is carried out with five years of meteorological and hydrological observations collected from the NOAA-ARS Cooperative Snow Research Project (1966-1974) at the Sleepers River watershed in Danville, Vermont, U.S.A. The numerical results show that the model is capable of reproducing the observed soil temperature at different depths during the winter as well as a rapid increase of soil temperature after snow melts in the spring. The model also simulates the density, temperature, thickness, and equivalent water depth of snow reasonably well. The numerical results are sensitive tothe fresh snow density and the soil properties used in the model, which affect the heat exchange between the snowpack and the soil.
机译:提出了一种基于土壤和积雪内部热和水物质守恒的一维土地表面模型。为了验证该模型,在美国佛蒙特州丹维尔的沉睡者河流域的NOAA-ARS合作积雪研究项目(1966-1974年)中收集了五年的气象和水文观测数据,进行了一项独立的实验。结果表明,该模型能够再现冬季不同深度处观测到的土壤温度,以及春季融雪后土壤温度的快速升高。该模型还可以很好地模拟雪的密度,温度,厚度和等效水深。数值结果对模型中使用的新鲜积雪密度和土壤特性敏感,影响积雪与土壤之间的热交换。

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