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首页> 外文期刊>Journal of Climate >The Impact on a GCM Climate of an Extended Mosaic Technique for the Land-Atmosphere Coupling
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The Impact on a GCM Climate of an Extended Mosaic Technique for the Land-Atmosphere Coupling

机译:地面-大气耦合扩展镶嵌技术对GCM气候的影响

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摘要

Heterogeneities in the land surface on scales smaller than the typical general circulation model (GCM) grid size can have a profound influence on the grid-scale mean climate. There exists observational and modeling evidence that the direct effects ofsurface heterogeneities may be felt by the atmosphere well into the planetary boundary layer. The impact of including an "extended mosaic" (EM) scheme, which accounts for the vertical influence of land surface heterogeneities in a GCM, is evaluated hereby comparing side-by-side GCM simulations with EM and with the more standard mosaic formulation (M). Differences between the EM and M simulations are observed in the boundary layer structure, in fields that link the boundary layer and the general circulation, and in fields that represent the general circulation itself. Large EM - M differences are found over the eastern United States, eastern Asia, and southern Africa in the summertime, and are associated with a boundary layer eddy diffusion feedback mechanism. The feedback mechanism operates as a positive or negative feedback depending on the local Bowen ratio. Significant EM -M differences are also found in the region of the Australian monsoon and in the strength of the stationary Pacific-North America pattern in the northern Pacific.
机译:土地表层的非均质性小于典型的一般环流模型(GCM)网格大小,会对网格规模的平均气候产生深远的影响。有观测和建模证据表明,大气层可以很好地感觉到表面异质性的直接影响,而这种现象可以直接进入行星边界层。在此评估包括“扩展镶嵌”(EM)方案的影响,该方案解释了GCM中陆地表面非均质性的垂直影响,方法是将并排GCM模拟与EM和更标准的镶嵌公式(M )。 EM和M模拟之间的差异在边界层结构,链接边界层和总体环流的字段以及代表总体环流本身的字段中观察到。夏季在美国东部,东亚和南部非洲发现较大的EM-M差异,并且与边界层涡流扩散反馈机制相关。反馈机制根据本地Bowen比率作为正反馈或负反馈工作。在澳大利亚季风区域和北太平洋太平洋-北美平稳模式的强度中也发现了明显的EM -M差异。

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