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首页> 外文期刊>Atmospheric environment >Mics-asia Ii: Model Intercomparison And Evaluation Of Particulate Sulfate, Nitrate And Ammonium
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Mics-asia Ii: Model Intercomparison And Evaluation Of Particulate Sulfate, Nitrate And Ammonium

机译:Mics-asia Ii:硫酸盐,硝酸盐和铵盐的模型比对和评估

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摘要

The model-model comparisons are made in view of the total amount in the atmosphere, vertical profile, coefficient of variation in surface concentrations, and transformation changes with distance. All the models show reasonable tendencies in vertical profiles and composition ratios. However, total amounts in the atmosphere are discrepant among the models. The consistency of the total amount in the atmosphere would influence source-receptor analysis. It seems that model results would be consistent, if the models take into account the primitive processes like emission, advection/diffusion, chemical transformation and dry/wet deposition, no matter the processes are modeled simply or comprehensively. Through the comparison study, we learned that it would be difficult to find any problems from one comparison (model-observation comparison with one data or many but at one station or in a short period). Modelers tend to examine model performances only from model-observation comparisons. However, taking budget in a certain or whole model domain would be important, before the models are applied to source-receptor analysis.
机译:考虑到大气中的总量,垂直剖面,表面浓度的变化系数以及随距离的变换变化,进行了模型-模型比较。所有模型在垂直剖面和组成比上都显示出合理的趋势。但是,模型中大气中的总量并不相同。大气中总量的一致性会影响源-受体分析。如果模型考虑了原始过程(例如排放,对流/扩散,化学转化和干/湿沉积),那么无论模型是简单还是全面建模,模型结果似乎都是一致的。通过比较研究,我们发现很难从一个比较中发现任何问题(用一个数据或多个数据进行模型观察比较,但要在一站或短时间内进行)。建模者倾向于仅通过模型观察比较来检查模型性能。但是,在将模型应用于源-受体分析之前,在某个或整个模型域中进行预算很重要。

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