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首页> 外文期刊>Journal of hydrometeorology >Effects of averaging and separating soil moisture and temperature in the presence of snow cover in a SVAT and hydrological model for a Southern Ontario, Canada, watershed
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Effects of averaging and separating soil moisture and temperature in the presence of snow cover in a SVAT and hydrological model for a Southern Ontario, Canada, watershed

机译:在加拿大安大略省南部流域的SVAT和水文模型中,在存在积雪的情况下平均和分离土壤水分和温度的影响

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摘要

The energy and water balances at the earth's surface are dramatically influenced by the presence of snow cover. Therefore, soil temperature and moisture for snow-covered and snow-free areas can be very different. In computing these soil state variables, many land surface schemes in climate models do not explicitly distinguish between snow-covered and snow-free areas. Even if they do, some schemes average these state variables to calculate grid-mean energy fluxes and these averaged state variables are then used at the beginning of the next time step. This latter approach introduces a numerical error in that heat is redistributed from snow-free areas to snow-covered areas, resulting in a more rapid snowmelt. This study focuses on the latter approach and examines the sensitivity of soil moisture and streamflow to the treatment of the soil state variables in the presence of snow cover by using WATCLASS, a land surface scheme linked with a hydrologic model. The model was tested for the 1993 snowmelt period oil the Upper Grand River in Southern Ontario, Canada. The results show that a more realistic simulation of streamflow can be obtained by keeping track of the soil states in snow-covered and snow-free areas.
机译:积雪的存在极大地影响了地球表面的能量和水平衡。因此,积雪和无雪地区的土壤温度和湿度可能会有很大差异。在计算这些土壤状态变量时,气候模型中的许多陆地表面方案都没有明确地区分积雪和无雪地区。即使这样做,某些方案也会对这些状态变量进行平均,以计算电网平均能量通量,然后在下一个时间步的开始使用这些平均状态变量。后一种方法引入了一个数值误差,因为热量从无雪地区重新分布到积雪地区,导致融雪更加迅速。这项研究侧重于后一种方法,并通过使用WATCLASS(一种与水文模型相联系的地表方案),研究了在有积雪的情况下土壤水分和水流对土壤状态变量的处理的敏感性。该模型在加拿大安大略省南部的上格兰德河的1993年融雪期油中进行了测试。结果表明,通过跟踪积雪和无雪地区的土壤状态,可以获得更逼真的水流模拟。

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