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Volcanic contribution to decadal changes in tropospheric temperature

机译:火山对流层温度年代际变化的贡献

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Despite continued growth in atmospheric levels of greenhouse gases, global mean surface and tropospheric temperatures have shown slower warming since 1998 than previously~(1–5). Possible explanations for the slow-down include internal climate variability~(3,4,6,7), external cooling influences~(1,2,4,8–11) and observational errors12,13. Several recent modelling studies have examined the contribution of early twenty-first-century volcanic eruptions~(1,2,4,8) to the muted surface warming. Here we present a detailed analysis of the impact of recent volcanic forcing on tropospheric temperature, based on observations as well as climate model simulations. We identify statistically significant correlations between observations of stratospheric aerosol optical depth and satellite-based estimates of both tropospheric temperature and short-wave fluxes at the top of the atmosphere. We show that climate model simulations without the effects of early twenty-first-century volcanic eruptions overestimate the tropospheric warming observed since 1998. In two simulations with more realistic volcanic influences following the 1991 Pinatubo eruption, differences between simulated and observed tropospheric temperature trends over the period 1998 to 2012 are up to 15% smaller, with large uncertainties in the magnitude of the effect. To reduce these uncertainties, better observations of eruption-specific properties of volcanic aerosols are needed, aswell as improved representation of these eruption-specific properties in climate model simulations.
机译:尽管大气中温室气体的含量持续增长,但自1998年以来,全球平均地表温度和对流层温度显示出比以前〜(1-5)慢。关于减速的可能解释包括内部气候变化〜(3,4,6,7),外部冷却影响〜(1,2,4,8-11)和观测误差12,13。最近的几项建模研究已经研究了二十世纪初的火山喷发〜(1,2,4,8)对减弱的地面变暖的贡献。在这里,我们根据观测和气候模型模拟,对最近的火山强迫对对流层温度的影响进行了详细分析。我们确定平流层气溶胶光学深度的观测值与基于卫星的对流层温度和大气顶部短波通量的基于卫星的估计之间的统计显着相关性。我们显示,没有二十一世纪早期火山喷发影响的气候模式模拟高估了自1998年以来观测到的对流层变暖。在1991年皮纳图博火山喷发之后具有更现实火山影响的两次模拟中,模拟和观测到的对流层温度趋势之间的差异1998年至2012年的时间间隔要小15%,其影响程度尚不确定。为了减少这些不确定性,需要更好地观察火山气溶胶的特定于喷发的特性,以及在气候模型模拟中更好地表示这些特定于喷发的特性。

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