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Aerosol water parameterization: long-term evaluation and importance for climate studies

机译:气溶胶水参数化:气候研究的长期评估和重要性

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We scrutinize the importance of aerosol water for the aerosol optical depth (AOD) calculations using a long-term evaluation of the EQuilibrium Simplified Aerosol Model v4 for climate modeling. EQSAM4clim is based on a single solute coefficient approach that efficiently parameterizes hygroscopic growth, accounting for aerosol water uptake from the deliquescence relative humidity up to supersaturation. EQSAM4clim extends the single solute coefficient approach to treat water uptake of multicomponent mixtures. The gas-aerosol partitioning and the mixed-solution water uptake can be solved analytically, preventing the need for iterations, which is computationally efficient. EQSAM4clim has been implemented in the global chemistry climate model EMAC and compared to ISORROPIA II on climate timescales. Our global modeling results show that (I) our EMAC results of the AOD are comparable to modeling results that have been independently evaluated for the period 2000-2010, (II) the results of various aerosol properties of EQSAM4clim and ISORROPIA II are similar and in agreement with AERONET and EMEP observations for the period 2000-2013, and (III) the underlying assumptions on the aerosol water uptake limitations are important for derived AOD calculations. Sensitivity studies of different levels of chemical aging and associated water uptake show larger effects on AOD calculations for the year 2005 compared to the differences associated with the application of the two gas-liquid-solid partitioning schemes. Overall, our study demonstrates the importance of aerosol water for climate studies.
机译:我们使用用于气候建模的平衡简化气溶胶模型V4的长期评估,仔细审查气雾剂水的重要性气溶胶光学深度(AOD)计算。 EQSAM4CLIM基于单一溶质系数方法,有效地参数化吸湿性生长,占气溶胶水从潮解的相对湿度达到过饱和度。 EQSAM4CLIM延长了单一溶质系数方法来治疗多组分混合物的水吸收。可以分析地解决气溶胶分配和混合溶液水摄取,防止需要迭代,这是计算效率的迭代。 EQSAM4CLIM已在全球化学气候模型EMAC中实施,并与ISORDOPIA II对气候时间尺度相比。我们的全球建模结果表明,(i)AOD的EMAC结果与2000-2010期间已独立评估的建模结果相当,(ii)各种AQSAM4CLIM和Isorropia II的各种气溶胶性能的结果是相似的和2000 - 2013年期间的AerOnet和EMEP观察的协议,(iii)气溶胶水吸收限制的潜在假设对于推导的AOD计算很重要。与与应用两个气液固体分配方案相关的差异相比,不同水平的化学老化和相关水摄取的敏感性研究显示了2005年AOD计算的巨大影响。总体而言,我们的研究表明了气候研究气溶胶水的重要性。

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