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作 者:曹杨 李钰春 赵晓莉 王晨曦 Cao Yang;Li Yuchun;Zhao Xiaoli;Wang Chenxi(Sichuan Meteorological Disasters Prevention Technology Center, Chengdu 610072, China;Key Laboratory of Atmospheric Chemistry, China Meteorological Administration, Beijing 100081, China;Zigong Meteorological Bureau, Zigong 643000, China)
机构地区:[1]四川省气象灾害防御技术中心,四川成都610072 [2]中国气象局大气化学重点开放实验室,北京100081 [3]自贡市气象局,四川自贡643000
出 处:《环境科学与管理》2020年第10期135-139,共5页Environmental Science and Management
基 金:中国气象局大气化学重点开放实验室开放课题(No.2020B05);国家自然科学基金面上项目(No.41275103)。
摘 要:利用成都市区2019年6-8月臭氧浓度数据和同时期地面气象观测资料分析表明(1)8月臭氧浓度最大,超标时数最多,6月次之,7月最小;(2)臭氧浓度和超标时数日变化呈“单峰单谷”型,峰值在16时,臭氧浓度滑动8 h平均值较小时平均值推后3 h;(3)臭氧浓度与气温、日最高气温、日照时数显著正相关,与相对湿度显著负相关;(4)风速小于1.5 m/s时,臭氧浓度随风速增加而增大,盛行西风和南风时,易出现臭氧浓度高值,盛行北风时臭氧浓度较低。The characteristics of ozone pollution and its relationship with meteorological factors were studied by using the hourly ozone concentration data and national meteorological observation data in Chengdu from June to August 2019 in urban Chengdu.The results showed that:(1)the average concentrations and over standard hours of hourly ozone in August was the highest,followed by that in June,and the lowest was in July.(2)The daily variation of ozone concentrations and over standard hours was“single peak single valley”type,with the peak at 16:00 BST,and the sliding eight-hour average ozone concentration was three hours after the hourly ozone concentration.(3)The concentration of ozone was positively related to temperature,daily maximum temperature and sunshine duration,and negatively related to relative humidity during summer.(4)When the wind speed was less than 1.5 m/s,the ozone concentration increased with wind speed.When the wind speed was greater than 1.5 m/s,the ozone concentration decreased with wind speed.Urban Chengdu mainly had higher ozone concentration in the west and south wind direction,while the ozone concentration was low under the influence of northerly winds.
分 类 号:X511[环境科学与工程—环境工程]
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