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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Radiative forcing by well-mixed greenhouse gases: Estimates from climate models in the Intergovernmental Panel on Climate Change (IPCC) Fourth Assessment Report (AR4)
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Radiative forcing by well-mixed greenhouse gases: Estimates from climate models in the Intergovernmental Panel on Climate Change (IPCC) Fourth Assessment Report (AR4)

机译:辐射强迫的摊位和温室气体排放:估计的气候模型政府间气候变化专门委员会(IPCC)第四次评估报告(AR4)

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摘要

The radiative effects from increased concentrations of well-mixed greenhouse gases (WMGHGs) represent the most significant and best understood anthropogenic forcing of the climate system. The most comprehensive tools for simulating past and future climates influenced by WMGHGs are fully coupled atmosphere-ocean general circulation models (AOGCMs). Because of the importance of WMGHGs as forcing agents it is essential that AOGCMs compute the radiative forcing by these gases as accurately as possible. We present the results of a radiative transfer model intercomparison between the forcings computed by the radiative parameterizations of AOGCMs and by benchmark line-by-line (LBL) codes. The comparison is focused on forcing by CO2, CH4, N2O, CFC-11, CFC-12, and the increased H2O expected in warmer climates. The models included in the intercomparison include several LBL codes and most of the global models submitted to the Intergovernmental Panel on Climate Change (IPCC) Fourth Assessment Report (AR4). In general, the LBL models are in excellent agreement with each other. However, in many cases, there are substantial discrepancies among the AOGCMs and between the AOGCMs and LBL codes. In some cases this is because the AOGCMs neglect particular absorbers, in particular the near-infrared effects of CH4 and N2O, while in others it is due to the methods for modeling the radiative processes. The biases in the AOGCM forcings are generally largest at the surface level. We quantify these differences and discuss the implications for interpreting variations in forcing and response across the multimodel ensemble of AOGCM simulations assembled for the IPCC AR4.
机译:增加的辐射影响温室气体浓度的混合(WMGHGs)代表最重要和最好的理解人为强迫的气候系统。模拟过去和未来气候的影响一般硕士WMGHGs完全耦合环流模型(AOGCMs)。WMGHGs作为强制代理的重要性必要AOGCMs计算辐射尽可能准确地迫使这些气体。我们目前的辐射传输的结果模型营力之间的相互比较的辐射参数化计算AOGCMs和基准逐行(LBL)代码。比较关注迫使通过二氧化碳,甲烷,一氧化二氮,CFC-11 CFC-12,增加了水预计在温暖的气候。在相互比较包括几个LBL代码和大多数的全球模型提交政府间气候变化专门委员会(IPCC)第四次评估报告(的事)。LBL模型是在良好的协议与每个其他。在AOGCMs和实质性的差异AOGCMs和LBL之间的代码。这是因为AOGCMs忽视吸收器,尤其是近红外影响甲烷和一氧化二氮,而在其他原因辐射建模方法流程。通常最大的表面层次。量化这些差异并讨论对解释变化的影响迫使整个multimodel和响应AOGCM模拟组装的合奏

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