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1563篇 您的检索式:期刊名="Atmospheric Research"
    题名 作者 年代 出处 被引量
1Chemical characteristics of haze during summer and winter in Guangzhou显示文摘Ji-Hua Tan Jing-Chun Duan Duo-Hong Chen Xin-Hua Wang Song-Jun Guo Xin-Hui Bi Guo-Ying Sheng Ke-Bin He Jia-Mo Fu 2009Atmospheric Research2009,,2:4
2Numerical modelling of the dynamic response of ice-shedding on electrical transmission lines显示文摘M Roshan Fekr G McClure 1998Atmospheric Research1998,,1:3
3Concentration, sources and ozone formation potential of volatile organic compounds (VOCs) during ozone episode in Beijing显示文摘Jingchun Duan Jihua Tan Liu Yang Shan Wu Jimin Hao 2007Atmospheric Research2007,,1:3
4Chemical characteristics of haze during summer and winter in Guangzhou显示文摘Ji-Hua Tan Jing-Chun Duan Duo-Hong Chen Xin-Hua Wang Song-Jun Guo Xin-Hui Bi Guo-Ying Sheng Ke-Bin He Jia-Mo Fu 2009Atmospheric Research2009,,2:3
5Electrical characteristics of thunderstorms in different plateau regions of China显示文摘Xiushu Qie Tinglong Zhang Guangshu Zhang Tong Zhang Xiangzhen Kong 2008Atmospheric Research2008,,2:2
6Research on aerosol sources and chemical composition: Past, current and emerging issues显示文摘A.I. Calvo C. Alves A. Castro V. Pont A.M. Vicente R. Fraile 2013Atmospheric Research2013,,:2
7The synoptic setting of thunderstorms in western Europe显示文摘Aarnout van Delden 2001Atmospheric Research2001,,1:2
8Long-term visibility trends and characteristics in the region of Beijing, Tianjin, and Hebei, China显示文摘Pusheng Zhao Xiaoling Zhang Xiaofeng Xu Xiujuan Zhao 2011Atmospheric Research2011,,3:2
9Concentration, sources and ozone formation potential of volatile organic compounds (VOCs) during ozone episode in Beijing显示文摘Jingchun Duan Jihua Tan Liu Yang Shan Wu Jimin Hao 2007Atmospheric Research2007,,1:2
10Assessment of the Off-season Rainfall of January to February 2020 and Its Socio Economic Implications in Tanzania: A Case Study of the Northern Coast of Tanzania显示文摘This article examines the off season rainfall in northern coast Tanzania(NCT)including Zanzibar which occurred in January and February 2020(JF).Like the JF rainfalls of 2001,2004,2010,2016 and 2018,the JF(2020)rainfall was more unique in damages including loss of lives,properties and infrastructures.The study used the NCEP/NCAR reanalysis data to examine the cause of uniqueness of JF rainfall in 2001,2004,2010,2016,2018 and 2020 over NCT and Zanzibar.These datasets include monthly mean u,v wind at 850,700,500,and 200 mb;SSTs,mean sea level pressure(MSLP)anomalies,Dipole Mode Index(DMI),and monthly rainfall from NCT and Zanzibar stations.Datasets were processed and calculated into long term,seasonal,and monthly averages,indeed,Precipitation Index(PI)was calculated.Correlation analysis between the rainfall(December to January),SST,DMI and 850 mb wind vectors;and long-term percentage contribution of investigated parameters was calculated.Results revealed significant positive and negative correlations between JF rainfall,SSTs and DMI.Moreover,JFs of 2004 and 2016 had higher rainfalls of 443 mm with percentage contribution of up to 406%,while January and February,2020 had the highest of 269.1 and 101.1mm in Zanzibar and 295 and 146.1 mm over and NCT areas,with highest January long-term rainfall contribution of 356%in Zanzibar and 526%over NCT.The DJF(2019/20)had the highest rainfall record of 649.5 mm in Zanzibar contributing up to 286%,while JF 2000 rainfall had a good spatial and temporal distribution over most NCT areas.JF,2020 rainfall had impacts of more than 20 people died in Lindi and several infrastructures including Kiyegeya Bridge in Morogoro were damaged.Conclusively,more research works on understanding the dynamics of wet and dry JF seasons should be conducted.Kombo Hamad Kai Sarah E Osima Agnes Laurence Kijazi Mohammed Khamis Ngwali Asya Omar Hamad 2021Journal of Atmospheric Science Research2021,4,2:2
11Chemical compositions and extinction coefficients of PM 2.5 in peri-urban of Xiamen, China, during June 2009–May 2010显示文摘Fuwang Zhang Lingling Xu Jinsheng Chen Yanke Yu Zhenchuan Niu Liqian Yin 2011Atmospheric Research2011,,:2
12Visibility trends in six megacities in China 1973–2007显示文摘Di Chang Yu Song Bing Liu 2009Atmospheric Research2009,,2:2
13Seasonal variations and chemical compositions of PM 2.5 aerosol in the urban area of Fuzhou, China显示文摘Lingling Xu Xiaoqiu Chen Jinsheng Chen Fuwang Zhang Chi He Jinping Zhao Liqian Yin 2011Atmospheric Research2011,,:2
14Modeling power line icing in freezing precipitation显示文摘Lasse Makkonen 1998Atmospheric Research1998,,1:2
15Intracloud discharge and the correlated basic charge structure of a thunderstorm in Zhongchuan, a Chinese Inland Plateau region显示文摘H. Cui X. Qie Q. Zhang T. Zhang G. Zhang J. Yang 2008Atmospheric Research2008,,2:2
16Local optical characteristics of mixed clouds:Simple parameterizations显示文摘KOKHANOVSKY A A 2007Atmospheric Research2007,84,:1
17Numerical modeling of the dynamic response of ice-shedding on electrical transmission lines显示文摘Roshan Fekr M McClure G 1998Atmospheric Research1998,46,12:1
18Charge separation during the fragmentation of rime and frost 显示文摘Saunders C P R Hickson H Malone M D Richtofen J V 1993Atmospheric Research1993,83,:1
19An investigation of boundary - forcing sensitivities in a regional climate model显示文摘Lynch A H Cullather R I 2000Journal of Geophysical Research - Atmospheres2000,105,26:1
20Assessment of ambient volatile or- ganic compounds (VOCs) near major roads in urban Nanjing, China 显示文摘Wang P Zhao W 2008Atmospheric Research2008,89,3:1
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