Ackerman, Andrew Starr

  1. Alexandrov M, Cairns B, Emde C, Ackerman A, Ottaviani M, Wasilewski A. DERIVATION OF CUMULUS CLOUD DIMENSIONS AND SHAPE FROM THE AIRBORNE MEASUREMENTS BY THE RESEARCH SCANNING POLARIMETER. Remote Sensing of Environment. 2016;177 144-152.
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  2. Fridlind A, Atlas R, van Diedenhoven B, Um J, McFarquhar G, Ackerman A, Moyer E, Lawson R. DERIVATION OF PHYSICAL AND OPTICAL PROPERTIES OF MID-LATITUDE CIRRUS ICE CRYSTALS FOR A SIZE-RESOLVED CLOUD MICROPHYSICS MODEL. Atmos. Chem. Phys. 2016;16 (11):7251-7283.
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  3. Zhang Z, Werner F, Cho H, Wind G, Platnick S, Ackerman A, Di Girolamo L, Marshak A, Meyer K. FRAMEWORK BASED ON 2-D TAYLOR EXPANSION FOR QUANTIFYING THE IMPACTS OF SUBPIXEL REFLECTANCE VARIANCE AND COVARIANCE ON CLOUD OPTICAL THICKNESS AND EFFECTIVE RADIUS RETRIEVALS BASED ON THE BISPECTRAL METHOD. J. Geophys. Res.-Atmos. 2016;121 (12):7007-7025.
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  4. Miller D, Zhang Z, Ackerman A, Platnick S, Baum B. IMPACT OF CLOUD VERTICAL PROFILE ON LIQUID WATER PATH RETRIEVAL BASED ON THE BISPECTRAL METHOD: A THEORETICAL STUDY BASED ON LARGE-EDDY SIMULATIONS OF SHALLOW MARINE BOUNDARY LAYER CLOUDS. J. Geophys. Res.-Atmos. 2016;121 (8):4122-4141.
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  5. de Roode S, Sandu I, van der Dussen J, Ackerman A, Blossey P, Jarecka D, Lock A, Siebesma A, Stevens B. LARGE-EDDY SIMULATIONS OF EUCLIPSE-GASS LAGRANGIAN STRATOCUMULUS-TO-CUMULUS TRANSITIONS: MEAN STATE, TURBULENCE, AND DECOUPLING. J. Atmos. Sci. 2016;73 (6):2485-2508.
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  6. van Diedenhoven B, Ackerman A, Fridlind A, Cairns B. ON AVERAGING ASPECT RATIOS AND DISTORTION PARAMETERS OVER ICE CRYSTAL POPULATION ENSEMBLES FOR ESTIMATING EFFECTIVE SCATTERING ASYMMETRY PARAMETERS. J. Atmos. Sci. 2016;73 (2):775-787.
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  7. van Lier-Walqui M, Fridlind A, Ackerman A, Collis S, Helmus J, MacGorman D, North K, Kollias P, Posselt D. ON POLARIMETRIC RADAR SIGNATURES OF DEEP CONVECTION FOR MODEL EVALUATION: COLUMNS OF SPECIFIC DIFFERENTIAL PHASE OBSERVED DURING MC3E. Mon. Weather Rev. 2016;144 (2):737-758.
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  8. Alexandrov M, Cairns B, Diedenhoven B, Ackerman A, Wasilewski A, McGill M, Yorks J, Hlavka D, Platnick S, Arnold G. POLARIZED VIEW OF SUPERCOOLED LIQUID WATER CLOUDS. Remote Sensing of Environment. 2016;181 96-110.
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  9. van Diedenhoven B, Fridlind A, Cairns B, Ackerman A, Yorks J. VERTICAL VARIATION OF ICE PARTICLE SIZE IN CONVECTIVE CLOUD TOPS. Geophys. Res. Lett. 2016;43 (9):4586-4593.
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  10. Cho H, Zhang Z, Meyer K, Lebsock M, Platnick S, Ackerman A, Di Girolamo L, C-Labonnote L, Cornet C, Riedi J, Holz R. FREQUENCY AND CAUSES OF FAILED MODIS CLOUD PROPERTY RETRIEVALS FOR LIQUID PHASE CLOUDS OVER GLOBAL OCEANS. J. Geophys. Res.-Atmos. 2015;120 (9):4132-4154.
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  11. Fridlind A, Ackerman A, Grandin A, Dezitter F, Weber M, Strapp J, Korolev A, Williams C. HIGH ICE WATER CONTENT AT LOW RADAR REFLECTIVITY NEAR DEEP CONVECTION - PART 1: CONSISTENCY OF IN SITU AND REMOTE-SENSING OBSERVATIONS WITH STRATIFORM RAIN COLUMN SIMULATIONS. Atmos. Chem. Phys. 2015;15 (20):11713-11728.
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  12. Ackerman A, Fridlind A, Grandin A, Dezitter F, Weber M, Strapp J, Korolev A. HIGH ICE WATER CONTENT AT LOW RADAR REFLECTIVITY NEAR DEEP CONVECTION - PART 2: EVALUATION OF MICROPHYSICAL PATHWAYS IN UPDRAFT PARCEL SIMULATIONS. Atmos. Chem. Phys. 2015;15 (20):11729-11751.
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  13. Alexandrov M, Cairns B, Wasilewski A, Ackerman A, McGill M, Yorks J, Hlavka D, Platnick S, Arnold G, Diedenhoven B, Chowdhary J, Ottaviani M, Knobelspiesse K. LIQUID WATER CLOUD PROPERTIES DURING THE POLARIMETER DEFINITION EXPERIMENT (PODEX). Remote Sensing of Environment. 2015;169 20-36.
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  14. Alexandrov M, Cairns B, Wasilewski A, Ackerman A, McGill M, Yorks J, Hlavka D, Platnick S, Arnold G, Diedenhoven B, Chowdhary J, Ottaviani M, Knobelspiesse K. LIQUID WATER CLOUD PROPERTIES DURING THE POLARIMETER DEFINITION EXPERIMENT (PODEX). Remote Sensing of Environment. 2015;169 20-36.
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  15. Mrowiec A, Pauluis O, Fridlind A, Ackerman A. PROPERTIES OF A MESOSCALE CONVECTIVE SYSTEM IN THE CONTEXT OF AN ISENTROPIC ANALYSIS. J. Atmos. Sci. 2015;72 (5):1945-1962.
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  16. Vogelmann A, Fridlind A, Toto T, Endo S, Lin W, Wang J, Feng S, Zhang Y, Turner D, Liu Y, Li Z, Xie S, Ackerman A, Zhang M, Khairoutdinov M. RACORO CONTINENTAL BOUNDARY LAYER CLOUD INVESTIGATIONS: 1. CASE STUDY DEVELOPMENT AND ENSEMBLE LARGE-SCALE FORCINGS. J. Geophys. Res.-Atmos. 2015;120 (12):5962-5992.
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  17. Endo S, Fridlind A, Lin W, Vogelmann A, Toto T, Ackerman A, McFarquhar G, Jackson R, Jonsson H, Liu Y. RACORO CONTINENTAL BOUNDARY LAYER CLOUD INVESTIGATIONS: 2. LARGE-EDDY SIMULATIONS OF CUMULUS CLOUDS AND EVALUATION WITH IN SITU AND GROUND-BASED OBSERVATIONS. J. Geophys. Res.-Atmos. 2015;120 (12):5993-6014.
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  18. Pincus R, Mlawer E, Oreopoulos L, Ackerman A, Baek S, Brath M, Buehler S, Cady-Pereira K, Cole J, Dufresne J, Kelley M, Li J, Manners J, Paynter D, Roehrig R, Sekiguchi M, Schwarzkopf D. RADIATIVE FLUX AND FORCING PARAMETERIZATION ERROR IN AEROSOL-FREE CLEAR SKIES. Geophys. Res. Lett. 2015;42 (13):5485-5492.
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  19. Zhang Z, Platnick S, Ackerman A, Cho H. SPECTRAL DEPENDENCE OF MODIS CLOUD DROPLET EFFECTIVE RADIUS RETRIEVALS FOR MARINE BOUNDARY LAYER CLOUDS. In: Light Scattering Reviews 9. Kokhanovsky A, editor. Springer; 2015.
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  20. Varble A, Zipser E, Fridlind A, Zhu P, Ackerman A, Chaboureau J, Fan J, Hill A, Shipway B, Williams C. EVALUATION OF CLOUD-RESOLVING AND LIMITED AREA MODEL INTERCOMPARISON SIMULATIONS USING TWP-ICE OBSERVATIONS: 2. PRECIPITATION MICROPHYSICS. J. Geophys. Res.-Atmos. 2014;119 (24):13919-13945.
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