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首页> 外文期刊>Journal of Advances in Modeling Earth Systems >A New Frozen Soil Parameterization Including Frost and Thaw Fronts in the Community Land Model
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A New Frozen Soil Parameterization Including Frost and Thaw Fronts in the Community Land Model

机译:社区土地模型中包括霜冻和融化锋面的新型冻土参数化

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Freeze–thaw processes in soils, including changes in frost and thaw fronts (FTFs), are very sensitive to warming. However, the latest climate models do not predict changes in FTFs directly. In this study, a new frozen soil parameterization including changes in FTFs was incorporated into the Community Land Model version 4.5 for climate modeling, which we denote CLM4.5_FTF. A set of numerical experiments including single points, regions in China, and a global scale were conducted using the model to validate its performance. The simulated FTF depths compare well with observed data from both the D66 station (permafrost) and Hulugou station (seasonally frozen ground). The simulated active layer thickness, defined as the maximum thaw front depth in permafrost, is in general agreement but slightly greater than observations from the Circumpolar Active Layer Monitoring program. The simulated distributions of different types of frozen soil in China and permafrost in the northern hemisphere are in agreement with the frozen soil map of China and the International Permafrost Association map, respectively. The results confirm that the model performs well for FTF simulations. The model was also used for year‐long simulations of soil temperature and freeze–thaw processes to check its applicability in continuous simulation. The results show that CLM4.5_FTF performed better than the original model, and the improvement was better for lower levels than for the upper level. Finally, we give simulated latent heat flux, sensible heat flux, and 10‐cm soil temperature deviations determined via the couple model with and without the new scheme.
机译:土壤的冻融过程,包括霜冻和融化前沿(FTF)的变化,对变暖非常敏感。但是,最新的气候模型不能直接预测FTF的变化。在这项研究中,新的包括FTF变化在内的冻土参数化被纳入气候模型的社区土地模型4.5版中,我们将其表示为CLM4.5_FTF。使用该模型进行了包括单点,中国区域和全球规模在内的一组数值实验,以验证其性能。模拟的FTF深度与D66站(多年冻土)和Hulugou站(季节性冻土)的观测数据相比较很好。通常,模拟的活动层厚度定义为多年冻土中的最大融化锋面深度,但略大于环极活动层监测程序的观测值。中国不同类型冻土和北半球多年冻土的模拟分布分别与中国冻土图和国际多年冻土协会图一致。结果证实,该模型对于FTF模拟具有良好的性能。该模型还用于土壤温度和冻融过程的长达一年的模拟,以检查其在连续模拟中的适用性。结果表明,CLM4.5_FTF的性能优于原始模型,并且较低级别的改进优于较高级别。最后,我们给出了在有和没有新方案的情况下通过耦合模型确定的模拟潜热通量,显热通量和10 cm的土壤温度偏差。

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