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首页> 外文期刊>Journal of hydrometeorology >An Assessment of Land-Atmosphere Interactions over South America Using Satellites, Reanalysis, and Two Global Climate Models
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An Assessment of Land-Atmosphere Interactions over South America Using Satellites, Reanalysis, and Two Global Climate Models

机译:利用卫星,重新分析和两个全球气候模型对南美洲的土地气氛互动进行评估

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In South America, land-atmosphere interactions have an important impact on climate, particularly the regional hydrological cycle, but detailed evaluation of these processes in global climate models has been limited. Focusing on the satellite-era period of 2003-14, we assess land-atmosphere interactions on annual to seasonal time scales over South America in satellite products, a novel reanalysis (ERA5-Land), and two global climate models: the Brazilian Global Atmospheric Model version 1.2 (BAM-1.2) and the U.K. Hadley Centre Global Environment Model version 3 (HadGEM3). We identify key features of South American land-atmosphere interactions represented in satellite and model datasets, including seasonal variation in coupling strength, large-scale spatial variation in the sensitivity of evapotranspiration to surface moisture, and a dipole in evaporative regime across the continent. Differences between products are also identified, with ERA5-Land, HadGEM3, and BAM-1.2 showing opposite interactions to satellites over parts of the Amazon and the Cerrado and stronger land-atmosphere coupling along the North Atlantic coast. Where models and satellites disagree on the strength and direction of land-atmosphere interactions, precipitation biases and misrepresentation of processes controlling surface soil moisture are implicated as likely drivers. These results show where improvement of model processes could reduce uncertainty in the modeled climate response to land-use change, and highlight where model biases could unrealistically amplify drying or wetting trends in future climate projections. Finally, HadGEM3 and BAM-1.2 are consistent with the median response of an ensemble of nine CMIP6 models, showing they are broadly representative of the latest generation of climate models.
机译:在南美洲,陆-气相互作用对气候,尤其是区域水文循环有着重要影响,但在全球气候模型中对这些过程的详细评估却很有限。聚焦于2003年至14年间的卫星时代,我们评估卫星产品上的南美洲年-季节时间尺度上的陆地-大气相互作用,一种新的再分析(ERA5陆地)和两个全球气候模型:巴西全球大气模型1.2(BAM-1.2)和英国哈德利中心全球环境模型版本3(HADGEM3)。我们确定了卫星和模型数据集中表示的南美洲陆-气相互作用的关键特征,包括耦合强度的季节变化、蒸散对地表水分的敏感性的大规模空间变化,以及整个大陆蒸发状态的偶极子。还确定了产品之间的差异,ERA5陆地、HadGEM3和BAM-1.2显示了亚马逊和塞拉多部分地区与卫星相反的相互作用,以及北大西洋沿岸更强的陆-气耦合。当模型和卫星在陆-气相互作用的强度和方向上存在分歧时,降水偏差和对控制地表土壤湿度的过程的错误描述可能是驱动因素。这些结果表明,在哪些方面,模型过程的改进可以减少对土地利用变化的模拟气候响应中的不确定性,并突出表明,在哪些方面,模型偏差可能不切实际地放大未来气候预测中的干燥或湿润趋势。最后,HadGEM3和BAM-1.2与九个CMIP6模型集合的中值响应一致,表明它们广泛代表了最新一代气候模型。

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