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High-resolution air quality modelling and time scale analysis of ozone and NOx in Osaka,Japan

机译:日本大阪市的高分辨率空气质量建模和臭氧和氮氧化物的时标分析

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The ozone pollution in the Osaka region is mainly influenced by the long-range transport of tropospheric ozone or its precursors from outside in winter but nearly 50% of the total ozone is chemically produced by regional emissions in summertime. The effects of the regional transport and the chemical production of ozone by regional emissions in summertime can be analysed by spectral decomposition of the time series and studying the inherent intra-day, diurnal and longer-term time scales in the time series of ozone and NO_x. The relative contributions of these time scale components associated with different physical processes are also used to evaluate the performance of air quality models in simulating ozone and NO_x. We used the Japanese national emission data with resolution of 10-km and 1-km resolution in the MM5-CMAQ modelling system for the nested simulation in Osaka with the finest domain having 1-km grid size. Among the different time scales, diurnal time scale has the highest correlation for ozone, and longer time scale has the highest correlation for NO and NO2. Spatial variation in the simulation of NO_x is evident from the study of correlation of diurnal and longer-term time scales, with higher correlations in the longer-term time scale. Overall, the time scale analysis of ozone and NO_x time series has proved useful for detailed quantitative analysis of the air quality modelling in Osaka.
机译:大阪地区的臭氧污染主要受到冬季对流层臭氧或其前体从外部的远距离迁移的影响,但夏季总排放量中近50%是由区域排放的化学方法产生的。可以通过时间序列的频谱分解并研究臭氧和NO_x的时间序列中固有的日内,昼夜和长期时间尺度,来分析夏季区域运输和臭氧对化学物质产生的影响。 。这些与不同物理过程相关的时标组件的相对贡献也用于评估模拟臭氧和NO_x的空气质量模型的性能。我们在MM5-CMAQ建模系统中使用分辨率为10 km和1 km的日本国家排放数据,在大阪进行嵌套模拟,最细的区域具有1 km的网格大小。在不同的时标中,昼夜时标与臭氧的相关性最高,而较长的时标与NO和NO2的相关性最高。 NO_x模拟的空间变化从昼夜和长期尺度之间的相关性研究中可以看出,在长期尺度上具有较高的相关性。总体而言,臭氧和NO_x时间序列的时间尺度分析已被证明可用于对大阪的空气质量模型进行详细的定量分析。

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