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作 者:Yani ZHANG Rui LIU Yunbiao ZHANG Yongliang HU Weishi AN
机构地区:[1]Meteorological Information Network Center of Zhejiang Province,Hangzhou 310017,China
出 处:《Meteorological and Environmental Research》2023年第1期24-28,共5页气象与环境研究(英文版)
基 金:Supported the Key Project of Zhejiang Meteorological Bureau(2019ZD14).
摘 要:Based on the observation data of the annual number of haze days,rainy days,fog days and gale days,sunshine hours,relative humidity and maximum wind speed at Hangzhou station from 1960 to 2021,the variation characteristics of haze days and meteorological influencing factors were studied by mathematical statistical methods such as Mann-Kendall nonparametric test,sliding T test,wavelet analysis and Pearson correlation two-tailed test.The results show that the annual number of haze days generally showed an upward trend,and the climate tendency rate was 20 d/a;there was a sudden change around 2001,and it changed from stable to rapid growth;the number of haze days was the largest in spring and winter,followed by autumn,while it was the smallest in summer.The annual number of haze days had a strongly significant period of 40 a and a mesoscale variation period of 13 a.The number of haze days was negatively correlated with the number of rainy days,fog days and gale days,sunshine hours,relative humidity and maximum wind speed,which passed the 0.05 significance test.In recent 60 years,the number of rainy days and gale days,relative humidity,and maximum wind speed in Hangzhou have decreased,resulting in the weakening of atmospheric wet deposition capacity and power transmission conditions,which provided favorable meteorological conditions for the increase of haze weather.
关 键 词:Number of haze days Wavelet analysis Influencing factor Correlation
分 类 号:X513[环境科学与工程—环境工程]
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