Nowcasting Applications of Geostationary Satellite Hourly Surface PM2.5 Data [0.03%]
基于静止卫星逐小时冠层PM2.5数据的临近预报应用研究
Hai Zhang,Zigang Wei,Barron H Henderson et al.
Hai Zhang et al.
The mass concentration of fine particulate matter (PM2.5; diameters less than 2.5 μm) estimated from geostationary satellite aerosol optical depth (AOD) data can supplement the network of ground monitors with high temporal (hourly) resolut...
Patrick S Skinner,Dustan M Wheatley,Kent H Knopfmeier et al.
Patrick S Skinner et al.
An object-based verification methodology for the NSSL Experimental Warn-on-Forecast System for ensembles (NEWS-e) has been developed and applied to 32 cases between December 2015 and June 2017. NEWS-e forecast objects of composite reflectiv...
Impact of adaptively thinned AIRS cloud-cleared radiances on tropical cyclone representation in a global data assimilation and forecast system [0.03%]
自适应稀疏AIRS云清除辐射对全球数据同化和预报系统中热带气旋表述的影响
Oreste Reale,Erica L McGrath-Spangler,Will McCarty et al.
Oreste Reale et al.
A simple adaptive thinning methodology for Atmospheric Infrared Sounder (AIRS) radiances is evaluated through a combination of Observing System Experiments (OSEs) and adjoint methodologies. The OSEs are performed with the NASA Goddard Earth...
Kinematic and Microphysical Significance of Lightning Jumps versus Non-Jump Increases in Total Flash Rate [0.03%]
闪电跃增与总闪频非跃增事件的动能和微物理意义分析
Christopher J Schultz,Lawrence D Carey,Elise V Schultz et al.
Christopher J Schultz et al.
Thirty-nine thunderstorms are examined using multiple-Doppler, polarimetric and total lightning observations to understand the role of mixed phase kinematics and microphysics in the development of lightning jumps. This sample size is larger...
Toward Improving High-Resolution Numerical Hurricane Forecasting: Influence of Model Horizontal Grid Resolution, Initialization, and Physics [0.03%]
Gopalakrishnan, Sundararaman G.; Goldenberg, Stanley; Quirino et al.
Gopalakrishnan et al.
Laroche, Stéphane; Sarrazin, Réal
Laroche
Verification of a Multimodel Storm Surge Ensemble around New York City and Long Island for the Cool Season [0.03%]
Di Liberto, Tom; Colle, Brian A.; Georgas et al.
Di Liberto et al.
Onderlinde, Matthew J.; Fuelberg, Henry E.
Onderlinde