首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Radiative forcing by long-lived greenhouse gases: Calculations with the AER radiative transfer models
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Radiative forcing by long-lived greenhouse gases: Calculations with the AER radiative transfer models

机译:长寿命温室气体的辐射强迫:利用AER辐射传递模型进行的计算

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摘要

A primary component of the observed recent climate change is the radiative forcing from increased concentrations of long-lived greenhouse gases (LLGHGs). Effective simulation of anthropogenic climate change by general circulation models (GCMs) is strongly dependent on the accurate representation of radiative processes associated with water vapor, ozone, and LLGHGs. In the context of the increasing application of the Atmospheric and Environmental Research, Inc. (AER), radiation models within the GCM community, their capability to calculate longwave and shortwave radiative forcing for clear sky scenarios previously examined by the radiative transfer model intercomparison project (RTMIP) is presented. Forcing calculations with the AER line-by-line (LBL) models are very consistent with the RTMIP line-by-line results in the longwave and shortwave. The AER broadband models, in all but one case, calculate longwave forcings within a range of ?0.20 to 0.23 W m?2 of LBL calculations and shortwave forcings within a range of ?0.16 to 0.38 W m?2 of LBL results. These models also perform well at the surface, which RTMIP identified as a level at which GCM radiation models have particular difficulty reproducing LBL fluxes. Heating profile perturbations calculated by the broadband models generally reproduce high-resolution calculations within a few hundredths K d?1 in the troposphere and within 0.15 K d?1 in the peak stratospheric heating near 1 hPa. In most cases, the AER broadband models provide radiative forcing results that are in closer agreement with high-resolution calculations than the GCM radiation codes examined by RTMIP, which supports the application of the AER models to climate change research.
机译:观测到的近期气候变化的一个主要成分是长寿命温室气体(LLGHGs)浓度增加引起的辐射强迫。通用循环模型(GCM)对人为气候变化的有效模拟很大程度上取决于与水蒸气,臭氧和LLGHGs相关的辐射过程的准确表示。在大气和环境研究公司(AER)的日益广泛应用的背景下,GCM社区内的辐射模型及其计算晴空场景中长波和短波辐射强迫的能力,之前由辐射传递模型比较项目进行了研究( RTMIP)。 AER逐行(LBL)模型的强制计算与RTMIP的长波和短波逐行结果非常一致。除一种情况外,AER宽带模型计算的LBL计算范围在0.20至0.23 W m?2范围内的长波强迫和LBL结果在0.16至0.38 W m?2范围内的短波强迫。这些模型在表面上也表现良好,RTMIP将其确定为GCM辐射模型在再现LBL通量方面特别困难的水平。由宽带模型计算出的加热剖面扰动通常在对流层的百分之几K d?1之内和在1 hPa附近的平流层峰值加热在0.15 K d?1之内再现高分辨率的计算结果。在大多数情况下,与RTMIP检验的GCM辐射代码相比,AER宽带模型提供的辐射强迫结果与高分辨率计算更接近,后者支持将AER模型应用于气候变化研究。

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