Tao, Wei-Kuo

  1. Wu D, Peters-Lidard C, Tao W, Petersen W. EVALUATION OF NU-WRF RAINFALL FORECASTS FOR IFLOODS. J. Hydrometeorol. 2016;17 (5):1317-1335.
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  2. Tao W, Wu D, Lang S, Chern J, Peters-Lidard C, Fridlind A, Matsui T. HIGH-RESOLUTION NU-WRF SIMULATIONS OF A DEEP CONVECTIVE-PRECIPITATION SYSTEM DURING MC3E: FURTHER IMPROVEMENTS AND COMPARISONS BETWEEN GODDARD MICROPHYSICS SCHEMES AND OBSERVATIONS. J GEOPHYS RES-ATMOS. 2016;121 (3):1278-1305.
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  3. Matsui T, Chern J, Tao W, Lang S, Satoh M, Hashino T, Kubota T. ON THE LAND-OCEAN CONTRAST OF TROPICAL CONVECTION AND MICROPHYSICS STATISTICS DERIVED FROM TRMM SATELLITE SIGNALS AND GLOBAL STORM-RESOLVING MODELS. J. Hydrometeorol. 2016;17 (5):1425-1445.
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  4. Chern J, Tao W, Lang S, Matsui T, Li J, Mohr K, Skofronick-Jackson G, Peters-Lidard C. PERFORMANCE OF THE GODDARD MULTISCALE MODELING FRAMEWORK WITH GODDARD ICE MICROPHYSICAL SCHEMES. J. Adv. Model. Earth Syst. 2016;8 (1):66-95.
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  5. Lau W, Shi J, Tao W, Kim K. WHAT WOULD HAPPEN TO SUPERSTORM SANDY UNDER THE INFLUENCE OF A SUBSTANTIALLY WARMER ATLANTIC OCEAN?. Geophys. Res. Lett. 2016;43 (2):802-811.
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  6. Tao W, Moncrieff M. CLOUDS AND FOG: CLOUD MODELING. In: Encyclopedia of Atmospheric Sciences (Second Edition). Academic Press; 2015.
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  7. Kang I, Yang Y, Tao W. GCMS WITH IMPLICIT AND EXPLICIT REPRESENTATION OF CLOUD MICROPHYSICS FOR SIMULATION OF EXTREME PRECIPITATION FREQUENCY. Clim Dyn. 2015;45 (1):325-335.
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  8. Peters-Lidard C, Kemp E, Matsui T, Santanello J, Kumar S, Jacob J, Clune T, Tao W, Chin M, Hou A, Case J, Kim D, Kim K, Lau W, Liu Y, Shi J, Starr D, Tan Q, Tao Z, Zaitchik B, Zavodsky B, Zhang S, Zupanski M. INTEGRATED MODELING OF AEROSOL, CLOUD, PRECIPITATION AND LAND PROCESSES AT SATELLITE-RESOLVED SCALES. Environmental Modelling & Software. 2015;67 149-159.
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  9. Tao W, Matsui T. NUMERICAL MODELS: CLOUD-SYSTEM RESOLVING MODELING AND AEROSOLS. In: Encyclopedia of Atmospheric Sciences (Second Edition). Academic Press; 2015.
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  10. Matsui T, Tao W, Munchak S, Grecu M, Huffman G. SATELLITE VIEW OF QUASI-EQUILIBRIUM STATES IN TROPICAL CONVECTION AND PRECIPITATION MICROPHYSICS. Geophys. Res. Lett. 2015;42 (6):1959-1968.
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  11. O'Halloran T, Fuentes J, Tao W, Li X. SENSITIVITY OF CONVECTION TO OBSERVED VARIATION IN AEROSOL SIZE DISTRIBUTIONS AND COMPOSITION AT A RURAL SITE IN THE SOUTHEASTERN UNITED STATES. J Atmos Chem. 2015;72 (3):441-454.
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  12. Lee S, Tao W, Jung C. AEROSOL EFFECTS ON INSTABILITY, CIRCULATIONS, CLOUDS, AND PRECIPITATION. Adv. Meteorol. 2014;8.
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  13. Lang S, Tao W, Chern J, Wu D, Li X. BENEFITS OF A FOURTH ICE CLASS IN THE SIMULATED RADAR REFLECTIVITIES OF CONVECTIVE SYSTEMS USING A BULK MICROPHYSICS SCHEME. J. Atmos. Sci. 2014;71 (10):3583-3612.
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  14. Tao W, Lang S, Zeng X, Li X, Matsui T, Mohr K, Posselt D, Chern J, Peters-Lidard C, Norris P, Kang I, Choi I, Hou A, Lau K, Yang Y. GODDARD CUMULUS ENSEMBLE MODEL (GCE): IMPROVEMENTS AND APPLICATIONS FOR STUDYING PRECIPITATION PROCESSES. Atmospheric Research. 2014;143 392-424.
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  15. Shi J, Matsui T, Tao W, Tan Q, Peters-Lidard C, Chin M, Pickering K, Guy N, Lang S, Kemp E. IMPLEMENTATION OF AN AEROSOL-CLOUD-MICROPHYSICS-RADIATION COUPLING INTO THE NASA UNIFIED WRF: SIMULATION RESULTS FOR THE 6-7 AUGUST 2006 AMMA SPECIAL OBSERVING PERIOD. Q. J. R. Meteorol. Soc. 2014;140 (684):2158-2175.
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  16. Matsui T, Santanello J, Shi J, Tao W, Wu D, Peters-Lidard C, Kemp E, Chin M, Starr D, Sekiguchi M, Aires F. INTRODUCING MULTISENSOR SATELLITE RADIANCE-BASED EVALUATION FOR REGIONAL EARTH SYSTEM MODELING. J. Geophys. Res.-Atmos. 2014;119 (13):26.
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  17. Wang C, Luo Z, Chen X, Zeng X, Tao W, Huang X. PHYSICALLY BASED ALGORITHM FOR NON-BLACKBODY CORRECTION OF CLOUD-TOP TEMPERATURE AND APPLICATION TO CONVECTION STUDY. J. Appl. Meteorol. Climatol. 2014;53 (7):1844-1857.
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  18. Iguchi T, Matsui T, Tao W, Khain A, Phillips V, Kidd C, L'Ecuyer T, Braun S, Hou A. WRF-SBM SIMULATIONS OF MELTING-LAYER STRUCTURE IN MIXED-PHASE PRECIPITATION EVENTS OBSERVED DURING LPVEX. J. Appl. Meteorol. Climatol. 2014;53 (12):2710-2731.
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  19. Shen B, Nelson B, Tao W, Lin Y. ADVANCED VISUALIZATIONS OF SCALE INTERACTIONS OF TROPICAL CYCLONE FORMATION AND TROPICAL WAVES. Computing in Science Engineering. 2013;15 (2):47-59.
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  20. Li X, Tao W, Masunaga H, Gu G, Zeng X. AEROSOL EFFECTS ON CUMULUS CONGESTUS POPULATION OVER THE TROPICAL PACIFIC: A CLOUD-RESOLVING MODELING STUDY. J. Meteorol. Soc. Jpn. 2013;91 (6):817-833.
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