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Development And Validation Of The Frozen Soil Parameterization Scheme In Common Land Model

机译:普通土地模型中冻土参数化方案的开发与验证

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In this paper, a frozen soil parameterization scheme is developed based on the Common Land Model. We modify a frozen soil parameterization scheme using soil matric potential to define maximum liquid water content when soil temperature is below the freezing point; the simulation performance is validated using the data from Maqu station on the Tibetan Plateau from 2005 to 2006. The simulated results indicate that the modified frozen soil parameterization scheme allows the liquid water to exist when the soil temperature is below the freezing point, and the simulated soil liquid water content is significantly improved. The simulated soil temperature is also improved because of the successful simulation of the soil liquid water content. The distribution of energy from the modified model is closer to the observed data. Also, the simulated latent heat flux from the modified model increases and the simulated soil heat flux descends compared with the original model.
机译:本文基于共同土地模型开发了一种冻土参数化方案。我们使用土壤基质势修改冻结的土壤参数化方案,以定义当土壤温度低于冰点时的最大液态水含量。利用青藏高原玛曲站2005年至2006年的数据对模拟效果进行了验证。模拟结果表明,改良的冻土参数化方案允许当土壤温度低于冰点时存在液态水,并进行了模拟。土壤液态水含量明显提高。由于成功模拟了土壤液态水含量,因此模拟土壤温度也得到了改善。修改后的模型中的能量分布更接近于观测数据。而且,与原始模型相比,改进模型的模拟潜热通量增加,模拟土壤热通量下降。

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