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首页> 外文期刊>Journal of hydrometeorology >The effects of observed fractional vegetation cover on the land surface climatology of the community land model
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The effects of observed fractional vegetation cover on the land surface climatology of the community land model

机译:观测的植被覆盖度对社区土地模型土地表面气候的影响

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Accurate modeling of surface processes requires a specification of the amount of land covered by vegetation. The National Center for Atmospheric Research Community Land Model (CLM2) does not realistically represent sparsely vegetated regions because of a lack of bare soil in the model. In this study, the existing CLM2 surface dataset is replaced by a global 1-km fractional vegetation cover dataset. This results in a doubling of global bare soil fraction in the model. It also significantly affects the fractional coverages of shrub, grass, and crop compared with only minor changes to trees. Regional changes occur most greatly in Australia, with an increase of over 0.4 in bare soil fraction. The western United States, southern South America, and southern Africa show fractional increases of more than 0.2. Simulations of CLM2 coupled with the Community Atmosphere Model (CAM2) show several regions with statistically significant decreases of up to 2 K in 2-m air temperature and up to 10 K in ground temperature, which reduces the high temperature bias in arid and semiarid regions in the model. In Australia, the vegetation changes result in an increase in net downward longwave radiation, which is balanced by an increase of latent and sensible heat fluxes and a decrease of absorbed solar radiation.
机译:表面过程的精确建模需要对植被覆盖的土地数量进行规范。美国国家大气研究社区土地模型中心(CLM2)由于模型中缺少裸露的土壤,因此并未实际代表稀疏的植被区域。在这项研究中,将现有的CLM2地表数据集替换为1 km的整体植被覆盖率数据集。这导致模型中的全球裸露土壤比例增加了一倍。与树木的微小变化相比,它也显着影响灌木,草和农作物的覆盖率。在澳大利亚,区域变化最大,裸土含量增加了0.4倍以上。美国西部,南美南部和非洲南部显示出小幅增长超过0.2。 CLM2的模拟与社区大气模型(CAM2)结合显示,几个区域在2 m的空气温度下最高下降2 K,在地面温度上下降10 K,具有统计上的显着降低,这减少了干旱和半干旱地区的高温偏差在模型中。在澳大利亚,植被的变化导致向下净长波辐射的增加,而潜在和显热通量的增加以及吸收的太阳辐射的减少是平衡的。

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