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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >A model for the longwave radiation budget of the Northern Hemisphere: Comparison with Earth Radiation Budget Experiment data
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A model for the longwave radiation budget of the Northern Hemisphere: Comparison with Earth Radiation Budget Experiment data

机译:北半球长波辐射预算的模型:与地球辐射预算实验数据的比较

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A deterministic model for atmospheric longwave radiation transfer was used with climatological data to predict the mean monthly zonal (10 deg latitudinal zones) longwave radiation budget at the Earth's surface and at the top of the atmosphere for the Northern Hemisphere. The climatological data were obtained from the International Satellite Cloud Climatology Project (1983-1990), and from the National Centers for Environmental Prediction/National Center for Atmospheric Research Reanalysis Project. The model's outgoing fluxes agree within a 4 m~(-2), on average, with the corresponding values determined from the Earth Radiation Budget Experiment (1985-1989) satellite data. The validation of the model for the top-of-atmosphere radiation budget allows one to obtain a better understanding of the important processes that govern the transfer of the longwave radiation for each season and zone. At the surface, validation of the predicted downwelling radiation is difficult owing to the lack of extensive ground-based measurements. However, we have made intercomparisons with other model predictions and with ground-based measurements that were available. The predictions of the model for the surface longwave radiation budget provide a measure against which simpler algorithms, derived from ground-based measurements, can be compared and used to convert satellite climatologies to a globally distributed surface longwave radiation budget for climatic studies.
机译:大气长波辐射传输的确定性模型与气候数据一起用于预测地球表面和北半球大气层顶部的平均每月纬向(纬度10度)长波辐射预算。气候数据来自国际卫星云气候项目(1983-1990年)和国家环境预测中心/国家大气研究再分析项目。该模型的输出通量平均在4 m〜(-2)范围内,与从“地球辐射预算实验”(1985-1989)卫星数据确定的相应值一致。对大气最高辐射预算模型的验证使人们可以更好地了解控制每个季节和地区长波辐射传输的重要过程。在地面上,由于缺乏广泛的基于地面的测量,因此难以验证预测的下行辐射。但是,我们已将其与其他模型预测以及可用的基于地面的测量进行了比较。该模型对地面长波辐射预算的预测提供了一种措施,可以将基于地面测量的更简单算法与之进行比较,并将其用于将卫星气候转换为全球分布的地面长波辐射预算用于气候研究。

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