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The characteristics and sources of the aerosols within the nocturnal residual layer over Wuhan, China 期刊论文
, 2020, 卷号: 241
作者:  Liu B.;  Ma Y.;  Shi Y.;  Jin S.;  Jin Y.;  Gong W.
收藏  |  浏览/下载:25/0  |  提交时间:2020/07/28
Aerosols  Boundary layers  Meteorology  Optical radar  Aerosol optical depths  Anthropogenic emissions  Correlation coefficient  Environmental pollutions  Meteorological parameters  Potential source contribution function  Residual layers  Stable boundary layer  Air pollution  aerosol  air mass  anthropogenic source  emission inventory  lidar  measurement method  nocturnal boundary layer  optical depth  point source  pollution monitoring  relative humidity  seasonal variation  urban pollution  China  Hubei  Wuhan  
Impact of assimilating multi-source observations on meteorological and PM2.5 forecast over Central China 期刊论文
, 2020, 卷号: 241
作者:  Liu J.;  Hong J.;  Mao F.;  Gong W.;  Shen L.;  Liang S.;  Chen J.
收藏  |  浏览/下载:20/0  |  提交时间:2020/07/28
Sounding apparatus  AMSU-A  Data assimilation  In-situ observations  WRF-Chem  WRFDA  Weather forecasting  air temperature  AMSU  atmospheric modeling  data assimilation  forecasting method  particulate matter  radiance  relative humidity  China  
Satellite-based spatiotemporal trends of ambient PM2.5 concentrations and influential factors in Hubei, Central China 期刊论文
, 2020, 卷号: 241
作者:  Huang Y.;  Ji Y.;  Zhu Z.;  Zhang T.;  Gong W.;  Xia X.;  Sun H.;  Zhong X.;  Zhou X.;  Chen D.
收藏  |  浏览/下载:22/0  |  提交时间:2020/07/28
Aerosols  Atmospheric humidity  Atmospheric thermodynamics  Boundary layer flow  Boundary layers  Mean square error  Optical properties  Vegetation  Wind  Central chinas  Correlation coefficient  Haze pollutions  Influential factors  Mixed-effect models  Normalized difference vegetation index  Planetary boundary layers  Spatiotemporal variability  Air pollution  ambient air  atmospheric modeling  atmospheric pollution  concentration (composition)  haze  particulate matter  satellite data  spatiotemporal analysis  trend analysis  variance analysis  wind  China  Hubei