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Sensitivity of atmospheric aerosol scavenging to precipitation intensity and frequency in the context of global climate change

机译:全球气候变化背景下大气气溶胶清除对降水强度和频率的敏感性

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Wet deposition driven by precipitation is an important sink for atmospheric aerosols and soluble gases. We investigate the sensitivity of atmospheric aerosol lifetimes to precipitation intensity and frequency in the context of global climate change. Our sensitivity model simulations, through some simplified perturbations to precipitation in the GEOS-Chem model, show that the removal efficiency and hence the atmospheric lifetime of aerosols have significantly higher sensitivities to precipitation frequencies than to precipitation intensities, indicating that the same amount of precipitation may lead to different removal efficiencies of atmospheric aerosols. Combining the long-term trends of precipitation patterns for various regions with the sensitivities of atmospheric aerosol lifetimes to various precipitation characteristics allows us to examine the potential impacts of precipitation changes on atmospheric aerosols. Analyses based on an observational dataset show that precipitation frequencies in some regions have decreased in the past 14?years, which might increase the atmospheric aerosol lifetimes in those regions. Similar analyses based on multiple reanalysis meteorological datasets indicate that the changes of precipitation intensity and frequency over the past 30?years can lead to perturbations in the atmospheric aerosol lifetimes by 10 % or higher at the regional scale.
机译:降水驱动的湿沉降是大气气溶胶和可溶性气体的重要汇。我们研究了全球气候变化背景下大气气溶胶寿命对降水强度和频率的敏感性。通过对GEOS-Chem模型中的降水进行一些简化的扰动,我们的敏感性模型仿真表明,气溶胶的去除效率和大气寿命对降水频率的敏感性明显高于对降水强度的敏感性,这表明相同数量的降水可能导致大气气溶胶的去除效率不同。结合各个地区降水模式的长期趋势以及大气气溶胶寿命对各种降水特征的敏感性,我们可以研究降水变化对大气气溶胶的潜在影响。基于观测数据集的分析表明,在过去的14年中,某些地区的降水频率有所下降,这可能会延长这些地区的大气气溶胶寿命。基于多个再分析气象数据集的类似分析表明,过去30年中,降水强度和频率的变化可能导致区域范围内大气气溶胶寿命的扰动达到10%或更高。

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