Remotely sensing cloud properties from microwave radiometric observations by using a modeled cloud database
暂无分享,去创建一个
Frank S. Marzano | Nazzareno Pierdicca | Patrizia Basili | Piero Ciotti | F. Marzano | N. Pierdicca | P. Basili | P. Ciotti | G. D'Auria | Giovanni d'Auria | R. Pinna Nossai | R. P. Nossai
[1] Norman C. Grody,et al. Effects of surface conditions on rain identification using the DMSP‐SSM/I , 1994 .
[2] Z. Kam,et al. Absorption and Scattering of Light by Small Particles , 1998 .
[3] R. C. Srivastava,et al. Snow Size Spectra and Radar Reflectivity , 1970 .
[4] A. Stogryn,et al. Equations for Calculating the Dielectric Constant of Saline Water (Correspondence) , 1971 .
[5] John A. Richards,et al. Remote Sensing Digital Image Analysis: An Introduction , 1999 .
[6] A. Mugnai,et al. Scattering of Radiation by Moderately Nonspherical Particles , 1980 .
[7] Christian D. Kummerow,et al. A Passive Microwave Technique for Estimating Rainfall and Vertical Structure Information from Space. Part I: Algorithm Description , 1994 .
[8] Christian Kummerow,et al. A simplified scheme for obtaining precipitation and vertical hydrometeor profiles from passive microwave sensors , 1996, IEEE Trans. Geosci. Remote. Sens..
[9] J. Weinman,et al. Microwave radiances from precipitating clouds containing aspherical ice, combined phase, and liquid hydrometeors , 1984 .
[10] Christian D. Kummerow,et al. On the accuracy of the Eddington approximation for radiative transfer in the microwave frequencies , 1993 .
[11] P. Ray,et al. Broadband complex refractive indices of ice and water. , 1972, Applied optics.
[12] Eric A. Smith,et al. Foundations for statistical-physical precipitation retrieval from passive microwave satellite measurements. II: Emission-source and generalized weighting-function properties of a time-dependent cloud-radiation model , 1993 .
[13] Alfred J. Bogush. Radar and the atmosphere , 1989 .
[14] J. Klett,et al. Microphysics of Clouds and Precipitation , 1978, Nature.
[15] Eric A. Smith,et al. Radiative Transfer to Space through a Precipitating Cloud at Multiple Microwave Frequencies. Part I: Model Description , 1988 .
[16] G. Tripoli. A Nonhydrostatic Mesoscale Model Designed to Simulate Scale Interaction , 1992 .
[17] Eric A. Smith,et al. Foundations for statistical-physical precipitation retrieval from passive microwave satellite measurements. I: Brightness-temperature properties of a time-dependent cloud-radiation model , 1992 .
[18] Eric A. Smith,et al. Spatial resolution enhancement of terrestrial features using deconvolved SSM/I microwave brightness temperatures , 1992, IEEE Trans. Geosci. Remote. Sens..
[19] Graeme L. Stephens,et al. A Bayesian approach to microwave precipitation profile retrieval , 1995 .
[20] Louis Garand,et al. Automated Recognition of Oceanic Cloud Patterns. Part I: Methodology and Application to Cloud Climatology , 1988 .
[21] Hans J. Liebe,et al. An updated model for millimeter wave propagation in moist air , 1985 .
[22] A. Negri,et al. Precipitation estimation over Sardinia from satellite infrared data , 1993 .
[23] Ronald M. Welch,et al. A neural network approach to cloud classification , 1990 .
[24] Nazzareno Pierdicca,et al. Precipitation retrieval from spaceborne microwave radiometers based on maximum a a posteriori probability estimation , 1996, IEEE Trans. Geosci. Remote. Sens..
[25] Michel Desbois,et al. Automatic classification of clouds on Meteosat imagery - Application to high-level clouds , 1982 .