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A simple model for predicting soil temperature in snow-covered and seasonally frozen soil: model description and testing

机译:一个简单的预测积雪和季节性冻结土壤温度的模型:模型描述和测试

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Microbial processes in soil are moisture, nutrient and temperature dependent and, consequently, accurate calculation of soil temperature is important for modelling nitrogen processes. Microbial activity in soil occurs even at sub-zero temperatures so that, in northern latitudes, a method to calculate soil temperature under snow cover and in frozen soils is required. This paper describes a new and simple model to calculate daily values for soil temperature at various depths in both frozen and unfrozen soils. The model requires four parameters: average soil thermal conductivity, specific heat capacity of soil, specific heat capacity due to freezing and thawing and an empirical snow parameter. Precipitation, air temperature and snow depth (measured or calculated) are needed as input variables. The proposed model was applied to five sites in different parts of Finland representing different climates and soil types. Observed soil temperatures at depths of 20 and 50 cm (September 1981–August 1990) were used for model calibration. The calibrated model was then tested using observed soil temperatures from September 1990 to August 2001. R size="-4">2-values of the calibration period varied between 0.87 and 0.96 at a depth of 20 cm and between 0.78 and 0.97 at 50 cm. R size="-4">2-values of the testing period were between 0.87 and 0.94 at a depth of 20cm, and between 0.80 and 0.98 at 50cm. Thus, despite the simplifications made, the model was able to simulate soil temperature at these study sites. This simple model simulates soil temperature well in the uppermost soil layers where most of the nitrogen processes occur. The small number of parameters required means that the model is suitable for addition to catchment scale models. style="line-height: 20px;">Keywords: soil temperature, snow model
机译:土壤中的微生物过程与水分,养分和温度有关,因此,准确计算土壤温度对于模拟氮过程非常重要。土壤中的微生物活动甚至在零度以下的温度下也会发生,因此在北纬地区,需要一种计算积雪和冰冻土壤中土壤温度的方法。本文介绍了一种新的简单模型,可以计算冷冻和未冷冻土壤中不同深度的土壤温度日值。该模型需要四个参数:平均土壤热导率,土壤比热容,因冻融产生的比热容和经验雪参数。需要降水,气温和积雪深度(测量或计算)作为输入变量。提议的模型被应用于芬兰不同地区的五个地点,分别代表了不同的气候和土壤类型。使用在20和50厘米深度(1981年9月至1990年8月)观察到的土壤温度进行模型校准。然后使用观察到的1990年9月至2001年8月的土壤温度对校准后的模型进行测试。校准期的R size =“-4”> 2 值在0.87至0.96之间变化深度为20厘米,50厘米处为0.78至0.97。测试期间的R size =“-4”> 2 值在20厘米深度处为0.87至0.94,在50厘米深度处为0.80至0.98。因此,尽管进行了简化,但是该模型仍能够模拟这些研究地点的土壤温度。这个简单的模型很好地模拟了发生大多数氮过程的最上层土壤层的土壤温度。所需的少量参数意味着该模型适用于流域规模模型。 style =“ line-height:20px;”> 关键字:土壤温度,积雪模型

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