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Multi-criteria selection of an Air Quality Model configuration based on quantitative and linguistic evaluations

机译:基于定量和语言评估的空气质量模型配置的多标准选择

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摘要

This study presents the application of multi-criteria evaluation in the selection of an optimal configuration for an Air Quality Model. The simulation domains focus on the Mexico City Metropolitan Area. A set of 10 different configurations were considered as alternatives. These configurations included convective parameterization, 6th order diffusion and exclusion of data assimilation within the Planetary Boundary Layer. In addition, model integration in a continuous setup and in a segmented setup was also considered. The modeling variables were surface temperature, wind speed, wind direction, and sulfur dioxide. The performance of the meteorological fields was evaluated with statistical metrics together with the Local Trend Association measure and further used as criteria. The air pollution field was evaluated qualitatively with five expert-based linguistic criteria and further converted into numerical terms. Meteorological variables and sulfur dioxide were aggregated into two single arrays, one for representing meteorology and the other for representing transport of a large industrial plume. Pareto Fronts were constructed for these two arrays under different weights scenarios. Results suggested that a model with no parameterizations in continuous integration setup and a model with segmented integrations using 6th order diffusion were the optimal configurations to conduct future air quality studies.
机译:这项研究提出了多标准评估在选择空气质量模型的最佳配置中的应用。模拟域集中在墨西哥城都会区。一组10种不同的配置被视为替代方案。这些配置包括对流参数化,六阶扩散和排除行星边界层内的数据同化。此外,还考虑了连续设置和分段设置中的模型集成。建模变量是表面温度,风速,风向和二氧化硫。气象领域的表现通过统计指标以及本地趋势协会度量进行了评估,并进一步用作标准。使用五个基于专家的语言标准对空气污染领域进行了定性评估,并进一步转换为数值术语。气象变量和二氧化硫被汇总为两个单独的数组,一个代表气象,另一个代表大工业羽流的运输。在不同权重的情况下为这两个阵列构造了帕累托锋。结果表明,在连续积分设置中没有参数化的模型和使用六阶扩散进行分段积分的模型是进行未来空气质量研究的最佳配置。

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