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Analysis on the Characteristics and Cause of a Compound Pollution Process in Changsha in 2017

机译:2017年长沙复合污染过程特征及原因分析

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Using the conventional meteorological observations, the air Air quality monitoring data, the L-band wind-profiling radar data, the NECP reanalysis data, and the simulation results of the HYSPLIT4 model, the compound pollution process from November 2 to 5, 2017 in Changsha is comprehensively analyzed in this study, including the sources and transport paths of pollutions, the Meteorological conditions and atmospheric boundary layer characteristics. The results showed that the process of air pollution in Changsha is a compound pollution process with high concentration of O_(3)and fine PM_(2.5)coexisting. It reached serious pollution from 08:00 to 11 : 00 on 4, PM_(2.5)was 269.3 ug·m~(?3)at 09:00 on 4 November. The characteristics of the two phases of this pollution process were clearly different. The first phase was mainly result of accumulation of local pollutants, and the second one was mainly result of outside resource. The maximum wind were light breezein on this pollution process, gentle breeze mainly occurred in the second stage of pollution, and the maximum wind velocity was 4.4m/s. It appearred multi-layer inversion usually, temperature stratification was stabled, and the inversion layer thickness reached the maximum value 909m at 20:00 on 3 November. The boundary layer convergenced and ascented movement, horizontal transport, vertical wind field distribution and atmospheric layer provided the favorable conditions for the air pollution process. The results showed that short-range transport of pollutants is the maily reason based on the HYSPLIT4 model, the northeast airflow was dominant at 100-1000m height. The vary of wind profile data and CO and SO_(2)emission ratio showed that the different pollution characteristics of two phases, the maximum ratio was more than 100. It has an important indicator for weather forecast in Changsha.
机译:使用传统的气象观测,空气质量监测数据,L波段风力分析雷达数据,NECP再分析数据和Hysplit4模型的模拟结果,2017年11月2日至5日的复合污染过程在长沙在本研究中全面分析,包括污染的来源和运输路径,气象条件和大气边界层特征。结果表明,长沙空气污染过程是一种复合污染过程,具有高浓度的O_(3)和精细PM_(2.5)共存。从4月4日,PM_(2.5)达到了08:00至11:00的严重污染。这种污染过程的两个阶段的特征显然是不同的。第一阶段主要是局部污染物积累的导致,第二个是外部资源的结果。最大风在这种污染过程中发光,微风主要发生在污染的第二阶段,最大风速为4.4m / s。它出现了多层反转,通常,稳定温度分层,转化层厚度在11月3日在20:00达到最大值909米。边界层会聚和朝中移动,水平传输,垂直风场分布和大气层为空气污染过程提供了有利的条件。结果表明,污染物的短距离运输是基于Hysplit4模型的邮政原因,东北气流在100-1000米的高度下占主导地位。风谱数据和CO和SO_(2)的变化显示,两个阶段的不同污染特性,最大比例大于100.它在长沙天气预报有一个重要指标。

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