[1]蒋镇,赵美艳.重庆城区大气细颗粒物浓度特征及其与气象因子的关系[J].气象研究与应用,2020,41(03):38-42.[doi:10.19849/j.cnki.CN45-1356/P.2020.3.07]
 Jiang Zhen,Zhao Meiyan.Characteristics of atmospheric fine particulate matter concentration in Chongqing urban area and its relationship with meteorological factors[J].Journal of Meteorological Research and Application,2020,41(03):38-42.[doi:10.19849/j.cnki.CN45-1356/P.2020.3.07]
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重庆城区大气细颗粒物浓度特征及其与气象因子的关系()
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气象研究与应用[ISSN:1673-8411/CN:45-1356/P]

卷:
第41卷
期数:
2020年03期
页码:
38-42
栏目:
研究论文
出版日期:
2020-09-30

文章信息/Info

Title:
Characteristics of atmospheric fine particulate matter concentration in Chongqing urban area and its relationship with meteorological factors
作者:
蒋镇1 赵美艳2
1. 重庆市气象服务中心, 重庆 401147;
2. 重庆市气象信息与技术保障中心, 重庆 401147
Author(s):
Jiang Zhen1 Zhao Meiyan2
1. Chongqing Meteorological Service Center, Chongqing 401147;
2. Chongqing Meteorological Information and Technical Support Center, Chongqing 401147
关键词:
PM2.5气象因子相关性
Keywords:
PM2.5meteorological factorscorrelation
分类号:
P41
DOI:
10.19849/j.cnki.CN45-1356/P.2020.3.07
摘要:
利用重庆城区2018年日均PM2.5浓度数据,分析其分布特征及与降水、能见度、温度、相对湿度等气象因子之间的相关关系。结果表明,PM2.5浓度与降水呈显著负相关,较大的日降水量和连续性降水可以明显洗刷空气中的细小颗粒,使得次日的PM2.5浓度值骤降;和秋冬季能见度呈显著负相关;温度对PM2.5浓度有一定影响,但季节因素起主要作用;与相对湿度呈显著负相关,高湿环境下的PM2.5吸湿增大效应小于降雨的洗刷作用。
Abstract:
Based on the daily average PM2.5 concentration data in Chongqing urban area in 2018, its distribution characteristics and the correlation with precipitation, visibility, temperature, relative humidity and other meteorological factors were analyzed. The results show that there is a significant negative correlation between PM2.5 concentration and precipitation. Stronger daily precipitation and continuous precipitation could wash away the fine particles in the air and make the PM2.5 concentration drop sharply the next day. PM2.5 concentration is significantly negatively correlated with visibility in autumn and winter. Temperature has a certain influence on PM2.5 concentration, but seasonal factors play a major role. PM2.5 concertration is significantly negatively correlated with relative humidity, and the effect of increasing moisture absorption of PM2.5 in a high-humidity environment is less than the scrubbing effect of rainfall.

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备注/Memo

备注/Memo:
收稿日期:2020-04-20。
作者简介:蒋镇(1984-),男,江苏泰州人,工程师,硕士研究生,主要从事气象服务工作。E-mail:jiangzhen188@126.com
更新日期/Last Update: 1900-01-01