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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Quantification of the source of errors in AM2 simulated tropical clear-sky outgoing longwave radiation
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Quantification of the source of errors in AM2 simulated tropical clear-sky outgoing longwave radiation

机译:量化的AM2错误的来源模拟热带晴空传出长波辐射

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The global and tropical means of clear-sky outgoing longwave radiation (hereinafter OLRc) simulated by the new GFDL atmospheric general circulation model, AM2, tend to be systematically lower than ERBE observations by about 4 W m?2, even though the AM2 total-sky radiation budget is tuned to be consistent with these observations. Here we quantify the source of errors in AM2-simulated OLRc over the tropical oceans by comparing the synthetic outgoing IR spectra at the top of the atmosphere on the basis of AM2 simulations to observed IRIS spectra. After the sampling disparity between IRIS and AM2 is reduced, AM2 still shows considerable negative bias in the simulated monthly mean OLRc over the tropical oceans. Together with other evidence, this suggests that the influence of spatial sampling disparity, although present, does not account for the majority of the bias. Decomposition of OLRc shows that the negative bias comes mainly from the H2O bands and can be explained by a too humid layer around 6–9 km in the model. Meanwhile, a positive bias exists in channels sensitive to near-surface humidity and temperature, which implies that the boundary layer in the model might be too dry. These facts suggest that the negative bias in the simulated OLRc can be attributed to model deficiencies, especially the large-scale water vapor transport. We also find that AM2-simulated OLRc has ~1 W m-2 positive bias originating from the stratosphere; this positive bias should exist in simulated total-sky OLR as well.
机译:全球和热带的晴空即将离任的长波辐射(以下简称OLRc)新GFDL模拟的大气循环模型、AM2往往是系统性的低于ERBE观察约4 W m ?尽管AM2 total-sky辐射预算调与这些观察是一致的。在这里我们量化错误的来源AM2-simulated OLRc在热带海洋对比合成即将离任的红外光谱大气顶部的AM2的基础上模拟观察虹膜光谱。抽样虹膜和AM2之间的差距减少,AM2仍显示了相当大的负面的偏见在模拟月意味着OLRc热带海洋。这表明,空间的影响抽样的差距,虽然现在,没有占大多数的偏见。OLRc分解表明,负的偏差主要来自水乐队,可以解释为太湿润层约6 - 9公里该模型。渠道对近地表湿度和敏感温度,这意味着它的边界层模型中可能会太干。模拟表明,负偏压OLRc可以归因于模型的不足,尤其是大规模的水蒸气运输。我们还发现AM2-simulated OLRc ~ 1 W m - 2正偏置源自平流层;这正偏压应该存在于模拟total-sky OLR。

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