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Analysis of Different Freezing/Thawing Parameterizations using the UTOPIA Model

机译:使用UTOPIA模型分析不同的冻结/解冻参数

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Soil moisture changes are generally due to external factors (precipitation, evaporation, etc.) and internal forces (gravitational force, capillarity, transpiration, etc.). When soil temperatures remain below 0 °C for a long time (hours or even entire consecutive days), part of the liquid water content of the soil can freeze, thus freezing/thawing effects must be taken into account in those conditions. The present work is devoted to the numerical modeling of the water phase change in the soil. The model used in this study for the land surface processes is UTOPIA (University of TOrino land Process Interaction in Atmosphere) model, which is the updated version of LSPM (Land Surface Process Model). Scientific literature proposes some formulations to account for freezing/thawing processes. Three different parameterizations have been compared using a synthetic dataset in order to assess which one performs best from a physical point of view. Parameterizing freezing/thawing processes creates numerical instability and water overproduction in the UTOPIA model. These problems have been solved and described in the paper by means of synthetic data created to test the new parameterizations. The results show that UTOPIA is able to capture the freezing/thawing physical processes.
机译:土壤水分的变化通常是由于外部因素(降水,蒸发等)和内部力(重力,毛细作用,蒸腾作用等)引起的。当土壤温度长时间(数小时甚至连续数天)保持在0°C以下时,土壤的部分液态水会冻结,因此在这些条件下必须考虑冻结/融化的影响。目前的工作致力于土壤中水相变化的数值模拟。本研究中用于陆地表面过程的模型是UTOPIA(都灵大学大气中的陆地过程相互作用)模型,它是LSPM(陆地表面过程模型)的更新版本。科学文献提出了一些解决冻结/解冻过程的方法。已使用合成数据集比较了三种不同的参数设置,以便从物理角度评估哪种参数设置效果最佳。在UTOPIA模型中,参数化冷冻/解冻过程会造成数值不稳定和水分过剩。这些问题已通过创建用于测试新参数化的综合数据解决并在本文中进行了描述。结果表明,UTOPIA能够捕获冻结/解冻的物理过程。

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