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Evaluation of aerosol number concentrations in NorESM with improved nucleation parameterization

机译:改进成核参数化内部气溶胶数浓度的评价

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The Norwegian Earth System Model (NorESM) is evaluated against atmospheric observations of aerosol number concentrations. The model is extended to include an explicit mechanism for new particle formation and secondary organic aerosol (SOA) formation from biogenic precursors. Three nucleation mechanisms are included in NorESM: binary sulfuric acid, activation type, and organic nucleation. Ten model experiments are conducted to study the sensitivity of the simulated aerosol number concentrations to nucleation, SOA formation, black carbon size distribution and model meteorology. Simulated vertical profiles are evaluated against 12 flight campaigns. Comparison of monthly averaged aerosol number concentrations against 60 measurement sites reveals that the model with explicit nucleation and SOA scheme performs well in terms of correlation coefficient, R2 = 0.41 and a bias of ?6%. NorESM generally overestimates the amplitude of the seasonal cycle, possibly due to underestimated sinks or exaggerated sensitivity to biogenic precursors.
机译:挪威地球系统模型(Noreorm)是针对气溶胶数量浓度的大气观察。该模型扩展到包括从生物生成前体形成的新颗粒形成和二次有机气溶胶(SOA)的明确机制。三个成核机制包括在整体中:二元硫酸,活化型和有机成核。进行了十个模型实验,以研究模拟气溶胶数浓度与成核,SOA形成,黑碳大小分布和模型气象的敏感性。模拟垂直轮廓针对12个飞行竞选活动进行评估。对60个测量部位的月平均气溶胶数浓度的比较显示,在相关系数的方案中具有明确成核和SOA方案的模型,R2 = 0.41和偏差为6%。本体通常高估季节性循环的幅度,可能是由于低估的沉没或夸大的生物前体敏感性。

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