Arctic Stratus Cloud Properties and Their Effect on the Surface Radiation Budget: Selected Cases from FIRE ACE
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Patrick Minnis | David F. Young | Gerald G. Mace | Xiquan Dong | D. F. Young | G. Mace | P. Minnis | Xiquan Dong
[1] Gerald G. Mace,et al. A constrained algorithm for retrieval of stratocumulus cloud properties using solar radiation, microwave radiometer, and millimeter cloud radar data , 2000 .
[2] Judith A. Curry,et al. Annual Cycle of Radiation Fluxes over the Arctic Ocean: Sensitivity to Cloud Optical Properties , 1992 .
[3] Patrick Minnis,et al. Parameterizations of reflectance and effective emittance for satellite remote sensing of cloud properties , 1998 .
[4] Patrick Minnis,et al. Cloud coverage and height during FIRE ACE derived from AVHRR data , 2001 .
[5] D. Hartmann,et al. The Effect of Cloud Type on Earth's Energy Balance: Global Analysis , 1992 .
[6] Michael D. King,et al. A solar reflectance method for retrieving the optical thickness and droplet size of liquid water clouds over snow and ice surfaces , 2001 .
[7] Syukuro Manabe,et al. Thermal Equilibrium of the Atmosphere with a Given Distribution of Relative Humidity , 1967 .
[8] P. Minnis,et al. Cloud radiative forcing at the top of the atmosphere during FIRE ACE derived from AVHRR data , 2001 .
[9] Edgar L. Andreas,et al. Year on ice gives climate insights , 1999 .
[10] Patrick Minnis,et al. Estimation of water cloud properties from satellite microwave, infrared and visible measurements in oceanic environments: 1. Microwave brightness temperature simulations , 1998 .
[11] Eugene E. Clothiaux,et al. Parameterizations of the microphysical and shortwave radiative properties of boundary layer stratus from ground-based measurements , 1998 .
[12] R. Boers. Simultaneous retrievals of cloud optical depth and droplet concentration from solar irradiance and microwave liquid water path , 1997 .
[13] Peter Pilewskie,et al. Microphysical and radiative properties of boundary layer stratiform clouds deduced from ground‐based measurements , 1997 .
[14] William B. Rossow,et al. Calculation of surface and top of atmosphere radiative fluxes from physical quantities based on ISCCP data sets: 2. Validation and first results , 1995 .
[15] E. Clothiaux,et al. Uncertainties in modeled and measured clear‐sky surface shortwave irradiances , 1997 .
[16] S. Schwartz,et al. The Atmospheric Radiation Measurement (ARM) Program: Programmatic Background and Design of the Cloud and Radiation Test Bed , 1994 .
[17] M. Shupe,et al. Cloud water contents and hydrometeor sizes during the FIRE Arctic Clouds Experiment , 2001 .
[18] Patrick Minnis,et al. Inference of cirrus cloud properties using satellite-observed visible and infrared radiances. Part I: parameterization of radiance fields , 1993 .
[19] Judith A. Curry,et al. Overview of Arctic Cloud and Radiation Characteristics , 1996 .
[20] B. Barkstrom,et al. Seasonal variation of cloud radiative forcing derived from the Earth Radiation Budget Experiment , 1990 .
[21] Patrick Minnis,et al. Estimation of water cloud properties from satellite microwave , 1998 .
[22] B. Barkstrom,et al. Cloud-Radiative Forcing and Climate: Results from the Earth Radiation Budget Experiment , 1989, Science.
[23] Judith A. Curry,et al. Review of Science Issues, Deployment Strategy, and Status for the ARM North Slope of Alaska–Adjacent Arctic Ocean Climate Research Site , 1999 .
[24] P. North,et al. New data sets for climate change and land use studies are on track , 1999 .
[25] Patrick Minnis,et al. A 25‐month database of stratus cloud properties generated from ground‐based measurements at the Atmospheric Radiation Measurement Southern Great Plains Site , 2000 .