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首页> 外文期刊>Asia-Pacific Journal of Atmospheric Sciences >Improvement of a soil-atmosphere-transfer model for the simulation of bare soil surface energy balances in semiarid areas
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Improvement of a soil-atmosphere-transfer model for the simulation of bare soil surface energy balances in semiarid areas

机译:改良半干旱区裸露土壤表面能量平衡的土壤-大气转移模型

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摘要

A soil-atmosphere-transfer model (SATM) was evaluated using observational data from the Tongyu Cropland Station and Audubon Research Ranch in semiarid areas, where the land cover was nearly bare soil during the simulation period. Simulations by the SATM at both sites were conducted using the new and original surface thermal roughness length parameterization schemes, respectively. Comparisons of simulations and observations have demonstrated that using the new surface thermal roughness length scheme in this model made sound improvements in the simulation of soil surface temperatures, sensible heat fluxes and net radiation fluxes in the daytime at both sites, compared to the original scheme, because the new scheme produced a larger aerodynamic resistance for turbulent heat transfer in the daytime. With respect to latent heat fluxes, the improvement was not as obvious as that attained for soil surface temperature since the soil water content in the surface layer in a semiarid area is a more important factor than surface soil temperature in controlling evaporation rate. Accordingly, it can be concluded that the new surface thermal roughness length parameterization scheme could improve the ability of the SATM to simulate bare soil surface energy budget with latent heat flux component being innegligible in semiarid areas.
机译:利用通榆农田站和奥杜邦研究牧场在半干旱地区的观测数据评估了土壤-大气迁移模型(SATM),在该地区模拟期间土地覆盖几乎为裸土。 SATM在两个站点上分别使用新的和原始的表面热粗糙度长度参数化方案进行了模拟。模拟和观测结果的比较表明,与原始方案相比,在该模型中使用新的表面热粗糙度长度方案在白天模拟两个地点的土壤表面温度,显热通量和净辐射通量方面均取得了明显的进步,因为新方案对白天的湍流传热产生了更大的空气动力阻力。关于潜热通量,改善不如土壤表面温度明显改善,因为在半干旱地区表层土壤水含量是控制蒸发速率比表面土壤温度更重要的因素。因此,可以得出结论,新的表面热粗糙度长度参数化方案可以提高SATM模拟裸土壤表面能量收支的能力,而在半干旱地区潜热通量分量是不可忽略的。

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