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Solar irradiance reduction to counteract radiative forcing from a quadrupling of CO2: climate responses simulated by four earth system models

机译:减少太阳辐照度以抵消二氧化碳四倍的辐射强迫:四种地球系统模型模拟的气候响应

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摘要

In this study we compare the response of four state-of-the-art Earth system models to climate engineering under scenario G1 of two model intercomparison projects: GeoMIP (Geoengineering Model Intercomparison Project) and IMPLICC (EU project "Implications and risks of engineering solar radiation to limit climate change"). In G1, the radiative forcing from an instantaneous quadrupling of the CO2 concentration, starting from the preindustrial level, is balanced by a reduction of the solar constant. Model responses to the two counteracting forcings in G1 are compared to the preindustrial climate in terms of global means and regional patterns and their robustness. While the global mean surface air temperature in G1 remains almost unchanged compared to the control simulation, the meridional temperature gradient is reduced in all models. Another robust response is the global reduction of precipitation with strong effects in particular over North and South America and northern Eurasia. In comparison to the climate response to a quadrupling of CO2 alone, the temperature responses are small in experiment G1. Precipitation responses are, however, in many regions of comparable magnitude but globally of opposite sign.
机译:在这项研究中,我们比较了两个模型比较项目(GeoMIP(地球工程模型比较项目)和IMPLICC(欧盟项目“工程太阳能的影响和风险”)的情景G1下四种最先进的地球系统模型对气候工程的响应辐射以限制气候变化”)。在G1中,从工业化前的水平开始,CO2浓度瞬时增加四倍引起的辐射强迫通过太阳常数的降低得到平衡。就全球手段和区域模式及其稳健性而言,将对G1中两个抵消作用的模型响应与工业化前的气候进行了比较。尽管与控制模拟相比,G1中的全球平均地面气温几乎保持不变,但在所有模型中子午温度梯度都降低了。另一个有力的应对措施是全球降水量减少,特别是在北美洲,南美洲和欧亚大陆北部。与仅对CO2增加四倍的气候响应相比,实验G1中的温度响应较小。但是,在许多地区,降水响应程度相当,但总体上却相反。

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