Satellite Observations of Cloud-Related Variations in Aerosol Properties
暂无分享,去创建一个
[1] J. Quaas,et al. Subgrid-scale variability in clear-sky relative humidity and forcing by aerosol–radiation interactions in an atmosphere model , 2017, Atmospheric Chemistry and Physics.
[2] P. Hoppe,et al. In-cloud sulfate addition to single particles resolved with sulfur isotope analysis during HCCT-2010 , 2014 .
[3] J. Coakley,et al. Aerosol and cloud property relationships for summertime stratiform clouds in the northeastern Atlantic from Advanced Very High Resolution Radiometer observations , 2005 .
[4] A. Marshak,et al. Near‐cloud aerosol properties from the 1 km resolution MODIS ocean product , 2014 .
[5] B. Stevens,et al. Aerosol effects on clouds, precipitation, and the organization of shallow cumulus convection , 2008 .
[6] Robert F. Cahalan,et al. A simple model for the cloud adjacency effect and the apparent bluing of aerosols near clouds , 2008 .
[7] Julia Fuchs,et al. Mapping the Twilight Zone - What We Are Missing between Clouds and Aerosols , 2017, Remote. Sens..
[8] Johannes Quaas,et al. Interpreting the cloud cover – aerosol optical depth relationship found in satellite data using a general circulation model , 2009 .
[9] Menghua Wang,et al. The NIR-SWIR combined atmospheric correction approach for MODIS ocean color data processing. , 2007, Optics express.
[10] L. Remer,et al. The Collection 6 MODIS aerosol products over land and ocean , 2013 .
[11] Ziauddin Ahmad,et al. New aerosol models for the retrieval of aerosol optical thickness and normalized water-leaving radiances from the SeaWiFS and MODIS sensors over coastal regions and open oceans. , 2010, Applied optics.
[12] P. Fu,et al. Hygroscopic behavior of water‐soluble matter extracted from biomass burning aerosols collected at a rural site in Tanzania, East Africa , 2014 .
[13] A. Bott,et al. On the cloud processing of aerosol particles: An entraining air‐parcel model with two‐dimensional spectral cloud microphysics and a new formulation of the collection kernel , 2002 .
[14] N. Bellouin,et al. Constraining the aerosol influence on cloud fraction , 2016 .
[15] Zhanqing Li,et al. Significant Underestimation in the Optically Based Estimation of the Aerosol First Indirect Effect Induced by the Aerosol Swelling Effect , 2018, Geophysical Research Letters.
[16] R. Rauber,et al. Aerosol Size Distribution, Particle Concentration, and Optical Property Variability near Caribbean Trade Cumulus Clouds: Isolating Effects of Vertical Transport and Cloud Processing from Humidification Using Aircraft Measurements , 2013 .
[17] E. Vermote,et al. The MODIS Aerosol Algorithm, Products, and Validation , 2005 .
[18] Alexander Marshak,et al. Effect of Cloud Fraction on Near-Cloud Aerosol Behavior in the MODIS Atmospheric Correction Ocean Color Product , 2015, Remote. Sens..
[19] Hongli Jiang,et al. Aerosol effects on the inter‐cloud region of a small cumulus cloud field , 2009 .
[20] Cynthia H. Twohy,et al. Effect of changes in relative humidity on aerosol scattering near clouds , 2008 .
[21] Bin Zhao,et al. The Modern-Era Retrospective Analysis for Research and Applications, Version 2 (MERRA-2). , 2017, Journal of climate.
[22] Michael D. Obland,et al. Aerosol and cloud interaction observed from high spectral resolution lidar data , 2008 .
[23] Steven Platnick,et al. Fog‐ and cloud‐induced aerosol modification observed by the Aerosol Robotic Network (AERONET) , 2012 .
[24] Alexander Marshak,et al. Global CALIPSO Observations of Aerosol Changes Near Clouds , 2011, IEEE Geoscience and Remote Sensing Letters.
[25] Menghua Wang,et al. Retrieval of water-leaving radiance and aerosol optical thickness over the oceans with SeaWiFS: a preliminary algorithm. , 1994, Applied optics.
[26] Robert F. Cahalan,et al. 3‐D aerosol‐cloud radiative interaction observed in collocated MODIS and ASTER images of cumulus cloud fields , 2007 .
[27] Yoram J. Kaufman,et al. On the twilight zone between clouds and aerosols , 2007 .
[28] A. Marshak,et al. MODIS observations of enhanced clear sky reflectance near clouds , 2009 .
[29] Robert F. Cahalan,et al. Importance of molecular Rayleigh scattering in the enhancement of clear sky reflectance in the vicinity of boundary layer cumulus clouds , 2008 .
[30] L. Remer,et al. How small is a small cloud , 2008 .
[31] J. Hudson,et al. Cloud supersaturations from CCN spectra Hoppel minima , 2015 .
[32] T. Eck,et al. Observation‐Based Study on Aerosol Optical Depth and Particle Size in Partly Cloudy Regions , 2017, Journal of geophysical research. Atmospheres : JGR.
[33] R. Charlson,et al. On the climate forcing consequences of the albedo continuum between cloudy and clear air , 2007 .
[34] Robert F. Cahalan,et al. Improvement of MODIS aerosol retrievals near clouds , 2013 .
[35] S. Ghan,et al. Aerosol optical depth increase in partly cloudy conditions , 2012 .
[36] P Wang,et al. Observations of the Interaction and Transport of Fine Mode Aerosols With Cloud and/or Fog in Northeast Asia From Aerosol Robotic Network and Satellite Remote Sensing , 2018, Journal of geophysical research. Atmospheres : JGR.
[37] Testing the two‐layer model for correcting near‐cloud reflectance enhancement using LES/SHDOM‐simulated radiances , 2016, Journal of geophysical research. Atmospheres : JGR.
[38] L. Remer,et al. Case studies of aerosol remote sensing in the vicinity of clouds , 2009 .
[39] R. Bar-Or,et al. Radiative properties of humidified aerosols in cloudy environment , 2012 .
[40] Olga V. Kalashnikova,et al. CALIPSO Observations of Transatlantic Dust: Vertical Stratification and Effect of Clouds , 2012 .
[41] O. Hasekamp,et al. Multiangle photopolarimetric aerosol retrievals in the vicinity of clouds: Synthetic study based on a large eddy simulation , 2016 .
[42] Natividad Manalo-Smith,et al. Top-of-Atmosphere Direct Radiative Effect of Aerosols over Global Oceans from Merged CERES and MODIS Observations , 2005 .
[43] Larry Di Girolamo,et al. Enhanced aerosol backscatter adjacent to tropical trade wind clouds revealed by satellite‐based lidar , 2009 .
[44] M. Christensen,et al. Unveiling aerosol–cloud interactions – Part 1: Cloud contamination in satellite products enhances the aerosol indirect forcing estimate , 2017 .
[45] Alexander Smirnov,et al. Observations of rapid aerosol optical depth enhancements in the vicinity of polluted cumulus clouds , 2014 .
[46] T. Eck,et al. Assessment of cloud related fine mode AOD enhancements based on AERONET SDA product , 2014 .
[47] T. Eck,et al. Comparison of Moderate Resolution Imaging Spectroradiometer (MODIS) and Aerosol Robotic Network (AERONET) remote-sensing retrievals of aerosol fine mode fraction over ocean , 2005 .
[48] Evgueni I. Kassianov,et al. On reflectance ratios and aerosol optical depth retrieval in the presence of cumulus clouds , 2008 .
[49] A. Marshak,et al. Analysis of co-located MODIS and CALIPSO observations near clouds , 2011 .
[50] Alexei Lyapustin,et al. Discrimination of biomass burning smoke and clouds in MAIAC algorithm , 2012 .
[51] Michael J. Garay,et al. Development and assessment of a higher-spatial-resolution (4.4 km) MISR aerosol optical depth product using AERONET-DRAGON data , 2017 .
[52] Zhanqing Li,et al. Separating real and apparent effects of cloud, humidity, and dynamics on aerosol optical thickness near cloud edges , 2010, Journal of Geophysical Research.
[53] Gerhard Meister,et al. Point-spread function of the ocean color bands of the Moderate Resolution Imaging Spectroradiometer on Aqua. , 2010, Applied optics.
[54] Alexei Lyapustin,et al. Observation of mountain lee waves with MODIS NIR column water vapor , 2014 .
[55] B. Turpin,et al. Secondary organic aerosol formation in cloud droplets and aqueous particles (aqSOA): a review of laboratory, field and model studies , 2011 .
[56] Patrick Minnis,et al. Two MODIS Aerosol Products over Ocean on the Terra and Aqua CERES SSF Datasets , 2004 .
[57] A. Panicker,et al. Near‐cloud aerosols in monsoon environment and its impact on radiative forcing , 2015 .
[58] Brent N. Holben,et al. An analysis of potential cloud artifacts in MODIS over ocean aerosol optical thickness products , 2005 .
[59] Yujie Wang,et al. Multiangle implementation of atmospheric correction (MAIAC): 1. Radiative transfer basis and look-up tables , 2011 .
[60] A. Marshak,et al. Multi-satellite aerosol observations in the vicinity of clouds , 2012 .