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A Soil-Vegetation-Atmosphere Transfer model for prairie grassland

机译:草原草原土壤 - 植被大气转移模型

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Soil-Vegetation-Atmosphere Transfer (SVAT) models provide the lower boundary forcing of atmospheric models (AMs). SVAT models are highly parameterized abstractions of energy, moisture, and momentum exchanges between the land and atmosphere. The quality of the SVAT model in capturing those exchanges greatly influences the effectiveness of the AM. The authors have developed a thermal model that includes moisture transfer in unsaturated soils. In this paper, they compare the predictions of the new model with those of their older annual model in which moisture was assumed to be fixed. They find that inclusion of moisture fluxes modifies the day-night temperature difference by as much as 11.0 K over a typical diurnal cycle in winter because of the dominant influence of moisture on soil properties.
机译:土壤 - 植被 - 大气转移(SVAT)模型提供大气模型(AMS)的下边界强制强制。 SVAT模型是陆地和大气之间的能量,水分和势头交流的高度参数化抽象。 SVAT模型的质量在捕获这些交换中的影响极大地影响了上午的有效性。作者开发了一种热模型,包括在不饱和土壤中的水分转移。在本文中,他们将新模型的预测与其较旧的年龄模型的预测进行了比较,其中假设水分是固定的。他们发现含有水分助熔剂的含量在冬季在典型的昼夜循环中改变日夜温度差,因为水分对土壤性质的显着影响。

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