A new approach for simultaneously retrieving cloud albedo and cloud fraction from surface-based shortwave radiation measurements
نویسندگان
چکیده
Surface-based measurements of shortwave (SW) radiative fluxes contain valuable information on cloud properties, but have not been fully used to infer those properties. Here a new analytical approach is presented that simultaneously infers cloud albedo and cloud fraction from surface-based measurements of total and direct radiative fluxes. An inspection of the analytical formulation reveals that cloud fraction is primarily determined by the relative cloud radiative forcing for the direct radiation, defined as the difference between the clear-sky and all-sky direct downwelling radiative fluxes normalized by the clear-sky direct downwelling radiative fluxes, while cloud albedo is primarily determined by the ratio of the relative cloud radiative forcing for the total downwelling radiation to the relative cloud radiative forcing for the direct radiation. The new analytical approach is validated using synthetic measurements generated by the rapid radiative transfer model (RRTM) algorithm with known cloud inputs and some surfaceand satellite-based measurements. The effect of cloud absorption is further corrected based on a suite of numerical experiments. The new approach demonstrates the utility of partitioning total radiation into direct and diffuse radiation, and eliminates the potential contamination of errors in existing approaches that retrieve cloud fraction and cloud albedo separately.
منابع مشابه
Relationship between cloud radiative forcing, cloud fraction and cloud albedo, and new surface-based approach for determining cloud albedo
This paper focuses on three interconnected topics: (1) quantitative relationship between surface shortwave cloud radiative forcing, cloud fraction, and cloud albedo; (2) surface-based approach for measuring cloud albedo; (3) multiscale (diurnal, annual and inter-annual) variations and covariations of surface shortwave cloud radiative forcing, cloud fraction, and cloud albedo. An analytical expr...
متن کاملRetrievals of cloud fraction and cloud albedo from surfacebased shortwave radiation measurements: A comparison of 16year measurements
Ground-based radiation measurements have been widely conducted to gain information on clouds and the surface radiation budget. To examine the existing techniques of cloud property retrieval and explore the underlying reasons for uncertainties, a newly developed approach that allows for simultaneous retrievals of cloud fraction and cloud albedo from ground-based shortwave broadband radiation mea...
متن کاملCharacterizing a New Surface-Based Shortwave Cloud Retrieval Technique, Based on Transmitted Radiance for Soil and Vegetated Surface Types
This paper presents an approach using the GEneralized Nonlinear Retrieval Analysis (GENRA) tool and general inverse theory diagnostics including the maximum likelihood solution and the Shannon information content to investigate the performance of a new spectral technique for the retrieval of cloud optical properties from surface based transmittance measurements. The cumulative retrieval informa...
متن کاملRelationship between net radiation and solar radiation for semi-arid shrub-land
This paper presents the results obtained by analysing a set of measurements of surface radiation balance components at a semi-arid location in SE Spain. The relationships between net and surface shortwave radiation were explored by using 38 months of 5 min surface radiation. The study area is covered by sparse clumped shrub-land of different species, although close to the radiometric station Re...
متن کاملImproving cloud information over deserts from SCIAMACHY Oxygen A-band measurements
The retrieval of column densities and concentration profiles of atmospheric trace gas species from satellites is sensitive to light scattered by clouds. The SCanning Imaging Absorption SpectroMeter for Atmospheric CHartographY (SCIAMACHY) instrument on the Envisat satellite, principally designed to retrieve trace gases in the atmosphere, is also capable of detecting clouds. FRESCO (Fast Retriev...
متن کامل