Radiative Forcing and Climate Sensitivity of Carbon Dioxide (CO2) Fine-tuned with CERES Data

A. Ollila
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Abstract

An updated effective radiative forcing (ERF) value for constructing a simplified logarithmic forcing equation, and a transient climate response (TCR) value, are presented for CO2, CH4, and N2O. The results are based on line-by-line (LBL) calculations utilizing the HITRAN database and the CERES radiation flux data for fine-tuning. The ERF value derived when doubling the CO2 concentration from 280 ppm (2xCO2) is 2.65 Wm-2 which is in line with the instantaneous radiative forcing (IRF) values of climate models referred to by the IPCC. The difference between the ERF values comes from the stratospheric cooling effect. It is a question about an essential paradigm change of the IPCC approach. In the former 2xCO2 value of 3.7 Wm-2, its portion was about 5 %, and in the present value, it is about 30 %. According to this study, the same effect is 10 %. The updated TCR value is 0.7 ±0.15 °C. 
利用 CERES 数据微调二氧化碳 (CO2) 的辐射强迫和气候敏感性
本文给出了用于构建简化对数强迫方程的更新有效辐射强迫(ERF)值,以及CO2、CH4和N2O的瞬态气候响应(TCR)值。结果基于逐行(LBL)计算,利用HITRAN数据库和CERES辐射通量数据进行微调。当二氧化碳浓度从280ppm (2xCO2)翻倍时,得到的ERF值为2.65 Wm-2,这与IPCC参考的气候模式的瞬时辐射强迫(IRF)值一致。ERF值之间的差异来自于平流层的冷却效应。这是一个关于政府间气候变化专门委员会方法的基本范式变化的问题。在3.7 Wm-2的前2xCO2值中,其所占比例约为5%,在现值中,其所占比例约为30%。根据这项研究,同样的效果是10%。更新后的TCR值为0.7±0.15℃。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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