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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >The roles of aerosol, water vapor and cloud in future global dimming/brightening
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The roles of aerosol, water vapor and cloud in future global dimming/brightening

机译:气溶胶的角色,水汽和云未来全球变暗/光明

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Observational evidence indicates significant regional trends in solar radiation at the surface in both all‐sky and cloud‐free conditions. Negative trends in the downwelling solar surface irradiance (SSI) have become known as ‘dimming’ while positive trends have become known as ‘brightening’. We use the Met Office Hadley Centre HadGEM2 climate model to model trends in cloud‐free and total SSI from the pre‐industrial to the present‐day and compare these against observations. Simulations driven by CMIP5 emissions are used to model the future trends in dimming/brightening up to the year 2100. The modeled trends are reasonably consistent with observed regional trends in dimming and brightening which are due to changes in concentrations in anthropogenic aerosols and, potentially, changes in cloud cover owing to the aerosol indirect effects and/or cloud feedback mechanisms. The future dimming/brightening in cloud‐free SSI is not only caused by changes in anthropogenic aerosols: aerosol impacts are overwhelmed by a large dimming caused by increases in water vapor. There is little trend in the total SSI as cloud cover decreases in the climate model used here, and compensates the effect of the change in water vapor. In terms of the surface energy balance, these trends in SSI are obviously more than compensated by the increase in the downwelling terrestrial irradiance from increased water vapor concentrations. However, the study shows that while water vapor is widely appreciated as a greenhouse gas, water vapor impacts on the atmospheric transmission of solar radiation and the future of global dimming/brightening should not be overlooked.
机译:观测证据表明显著地区太阳辐射表面的趋势在所有的天空和云检测——自由的条件。消极趋势下降太阳表面辐照度(SSI)被称为“暗”而积极的趋势被称为“光明”。中心HadGEM2气候模型,模型的趋势云的自由和总提前SSI的工业到现在的一天和比较这些反对观察。排放模型的未来趋势2100年调光/照亮。建模的趋势相当一致观察到的区域调光和的趋势光明将变化在人为气溶胶浓度,可能,云量的变化由于气溶胶间接影响和/或云反馈机制。云还是免费SSI不仅是由变化引起的人为气溶胶:气溶胶的影响被一个大变暗所致增加水蒸气。在总SSI的云量减少这里使用的气候模型,补偿水汽的变化的影响。在SSI表面能量平衡,这些趋势显然是超过补偿的增加下降的陆地辐照度的增加水蒸气浓度。而水蒸气作为中广受好评温室气体,水蒸气的影响大气的太阳辐射和传播全球变暗/未来的光明不被忽视。

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