The impact of aerosols on solar ultraviolet radiation and photochemical smog RR Dickerson, S Kondragunta, G Stenchikov, KL Civerolo, BG Doddridge, ... science 278 (5339), 827-830, 1997 | 741 | 1997 |
Suomi‐NPP VIIRS aerosol algorithms and data products JM Jackson, H Liu, I Laszlo, S Kondragunta, LA Remer, J Huang, ... Journal of Geophysical Research: Atmospheres 118 (22), 12,673-12,689, 2013 | 265 | 2013 |
Spatiotemporal Associations between GOES Aerosol Optical Depth Retrievals and Ground-Level PM2.5 CJ Paciorek, Y Liu, H Moreno-Macias, S Kondragunta Environmental science & technology 42 (15), 5800-5806, 2008 | 185 | 2008 |
Description and verification of the NOAA smoke forecasting system: the 2007 fire season GD Rolph, RR Draxler, AF Stein, A Taylor, MG Ruminski, S Kondragunta, ... Weather and Forecasting 24 (2), 361-378, 2009 | 173 | 2009 |
Near‐real‐time global biomass burning emissions product from geostationary satellite constellation X Zhang, S Kondragunta, J Ram, C Schmidt, HC Huang Journal of Geophysical Research: Atmospheres 117 (D14), 2012 | 135 | 2012 |
Toward aerosol optical depth retrievals over land from GOES visible radiances: determining surface reflectance KR Knapp, R Frouin, S Kondragunta, A Prados International Journal of Remote Sensing 26 (18), 4097-4116, 2005 | 128 | 2005 |
Preliminary evaluation of S‐NPP VIIRS aerosol optical thickness H Liu, LA Remer, J Huang, HC Huang, S Kondragunta, I Laszlo, M Oo, ... Journal of Geophysical Research: Atmospheres 119 (7), 3942-3962, 2014 | 125 | 2014 |
Evaluation of VIIRS, GOCI, and MODIS Collection 6 AOD retrievals against ground sunphotometer observations over East Asia Q Xiao, H Zhang, M Choi, S Li, S Kondragunta, J Kim, B Holben, RC Levy, ... Atmospheric Chemistry and Physics 16 (3), 1255-1269, 2016 | 118 | 2016 |
Estimating forest biomass in the USA using generalized allometric models and MODIS land products X Zhang, S Kondragunta Geophysical Research Letters 33 (9), 2006 | 114 | 2006 |
GOES aerosol/smoke product (GASP) over North America: comparisons to AERONET and MODIS observations AI Prados, S Kondragunta, P Ciren, KR Knapp Journal of Geophysical Research: Atmospheres 112 (D15), 2007 | 107 | 2007 |
Near real time monitoring of biomass burning particulate emissions (PM2. 5) across contiguous United States using multiple satellite instruments X Zhang, S Kondragunta, C Schmidt, F Kogan Atmospheric Environment 42 (29), 6959-6972, 2008 | 101 | 2008 |
Temporal and spatial variability in biomass burned areas across the USA derived from the GOES fire product X Zhang, S Kondragunta Remote Sensing of Environment 112 (6), 2886-2897, 2008 | 96 | 2008 |
Recent changes to the hazard mapping system M Ruminski, S Kondragunta, R Draxler, J Zeng Proceedings of the 15th International Emission Inventory Conference 15, 18, 2006 | 93 | 2006 |
Development and analysis of a 12-year daily 1-km forest fire dataset across North America from NOAA/AVHRR data R Pu, Z Li, P Gong, I Csiszar, R Fraser, WM Hao, S Kondragunta, F Weng Remote sensing of environment 108 (2), 198-208, 2007 | 92 | 2007 |
Comparison of fire radiative power estimates from VIIRS and MODIS observations F Li, X Zhang, S Kondragunta, I Csiszar Journal of Geophysical Research: Atmospheres 123 (9), 4545-4563, 2018 | 88 | 2018 |
Intercomparison of near-real-time biomass burning emissions estimates constrained by satellite fire data JA Al-Saadi, AJ Soja, RB Pierce, JJ Szykman, C Wiedinmyer, LK Emmons, ... Journal of Applied Remote Sensing 2 (1), 021504, 2008 | 82 | 2008 |
Validation and expected error estimation of Suomi‐NPP VIIRS aerosol optical thickness and Ångström exponent with AERONET J Huang, S Kondragunta, I Laszlo, H Liu, LA Remer, H Zhang, ... Journal of Geophysical Research: Atmospheres 121 (12), 7139-7160, 2016 | 81 | 2016 |
Comparison of GOES and MODIS Aerosol Optical Depth (AOD) to Aerosol Robotic Network (AERONET) AOD and IMPROVE PM2.5 Mass at Bondville, Illinois M Green, S Kondragunta, P Ciren, C Xu Journal of the Air & Waste Management Association 59 (9), 1082-1091, 2009 | 79 | 2009 |
Estimation of biomass-burning emissions by fusing the fire radiative power retrievals from polar-orbiting and geostationary satellites across the conterminous United States F Li, X Zhang, DP Roy, S Kondragunta Atmospheric Environment 211, 274-287, 2019 | 74 | 2019 |
NAQFC Developmental Forecast Guidance for Fine Particulate Matter (PM 2.5 ) P Lee, J McQueen, I Stajner, J Huang, L Pan, D Tong, H Kim, Y Tang, ... Weather and Forecasting 32 (1), 343-360, 2017 | 71 | 2017 |