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首页> 外文期刊>Atmospheric Chemistry and Physics Discussions >Impact of the North Atlantic Oscillation on European aerosol ground levels through local processes: a seasonal model-based assessment using fixed anthropogenic emissions
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Impact of the North Atlantic Oscillation on European aerosol ground levels through local processes: a seasonal model-based assessment using fixed anthropogenic emissions

机译:北大西洋涛动通过局部过程对欧洲气溶胶地面水平的影响:使用固定的人为排放的基于季节模型的评估

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pstrongAbstract./strong The North Atlantic Oscillation (NAO) controls a large amount of the European climate variability with asymmetric impacts in both time and space. Here we investigate how the NAO impact on the local atmospheric processes (disregarding the NAO impact on the large inter-continental transport mechanisms) influences the levels of various aerosol species using simulated data under constant emissions, which are fixed to the 2005 levels in order to avoid anthropogenic-induced signals. In particular, we analyze interannual variations at the seasonal timescale and focus on the ground-level. The results show that positive NAO phases favor increased aerosol concentrations in southern (northern) regions during winter (summer), while negative NAO phases enhance them in northern (southern) regions during winter (summer). The underlying processes are clearly related to the NAO impact on precipitation and wind, as they act to clean the atmosphere through removal and dispersion processes, and to the NAO impact on the radiation balance (i.e., cloudiness) as it affects the biogenic emitting activity and on the oxidative capacity of the atmosphere. Differences for all the species studied (natural inert, secondary inorganic and organic aerosols) are up to 5 ??g msupa??3/sup, reaching 10 and 20 ??g msupa??3/sup for PMsub10/sub and PMsub2.5/sub respectively, which represents variations of about 20a??40% in their mean levels between opposite NAO phases./p.
机译:> >摘要。北大西洋涛动(NAO)控制着大量的欧洲气候变化,并在时间和空间上产生了不对称的影响。在这里,我们使用恒定排放下的模拟数据调查了NAO对当地大气过程的影响(不考虑NAO对大型洲际运输机制的影响)如何影响各种气溶胶物种的水平,这些数据固定为2005年的水平,以便避免人为诱发的信号。特别是,我们分析了季节性时间尺度上的年际变化,并着重于地面水平。结果表明,NAO正相有利于冬季(夏季)南部(北部)气溶胶浓度的增加,而NAO负相则有利于冬季(夏季)北部(南部)气溶胶浓度的升高。潜在的过程显然与NAO对降水和风的影响有关,因为它们通过去除和分散过程来净化大气,并与NAO对辐射平衡(即阴天)的影响有关,因为它影响了生物发射活动和大气的氧化能力。所有研究物种(天然惰性,次级无机和有机气溶胶)的差异最高为5 ?? gm a ?? 3 ,分别达到10和20 ?? gm a?3 / sup>分别表示PM 10 和PM 2.5 ,它们在相对NAO相之间的平均水平变化约20a ?? 40%。

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