HR: 1340h
AN: H13D-0460 [Abstracts]
TI: Making Existing Surface Albedo Products Compatible with the Needs of Land Surface Models
AU: * PINTY, B
EM: bernard.pinty@jrc.it
AF: EC-Joint Research Centre, Institute for Environment and Sustainability - TP 440, 2 via E. Fermi, Ispra,
VA 21020
Italy
AU: TABERNER, M
EM: Malcolm.Taberner@jrc.it
AF: EC-Joint Research Centre, Institute for Environment and Sustainability - TP 440, 2 via E. Fermi, Ispra,
VA 21020
Italy
AU: LATTANZIO, A
EM: Lattanzio@eumetsat.de
AF: Makalumedia gmbh, Robert-Bosch Strasse 7, Darmstadt, 64296
Germany
AU: LIANG, S
EM: sliang@geog.umd.edu
AF: University of Maryland, Department of Geography, 2181 LeFrak Hall, College Park, MD 20742
United States
AU: MARTONCHIK, J V
EM: jvm@jord.jpl.nasa.gov
AF: Jet Propulsion Laboratory, California Institute of Technology, 4800 Oak Grove Drive, Pasadena, CA 91109
United States
AU: VERSTRAETE, M M
EM: michel.verstraete@jrc.it
AF: EC-Joint Research Centre, Institute for Environment and Sustainability - TP 440, 2 via E. Fermi, Ispra,
VA 21020
Italy
AU: DICKINSON, R E
EM: robted@eas.gatech.edu
AF: SEAC, Georgia Institute of Technology, 311 Ferst Drive, Atlanta, GA 30332
United States
AU: GOBRON, N
EM: nadine.gobron@jrc.it
AF: EC-Joint Research Centre, Institute for Environment and Sustainability - TP 440, 2 via E. Fermi, Ispra,
VA 21020
Italy
AU: WIDLOWSKI, J
EM: jean-luc.widlowski@jrc.it
AF: EC-Joint Research Centre, Institute for Environment and Sustainability - TP 440, 2 via E. Fermi, Ispra,
VA 21020
Italy
AU: GOVAERTS, Y
EM: Govaerts@eumetsat.de
AF: EUMETSAT, Am Kavalleriesand 31, Darmstadt, 64295
Germany
AU: Schaaf, C B
EM: schaaf@bu.edu
AF: Department of Geography, Boston University, 675 Commonwealth Avenue, Boston, MA 02215
United States
AB:
Improving the estimates of the radiation fluxes in particular and energy budget in general over continental surfaces requires
the assimilation of relevant and measurable variables responding to the various types of forcings that can be experienced by
land-surfaces. Surface albedo is one such variable controlling the net radiation fluxes which can themselves also be
estimated from space-borne sensors. Albedo products are nowadays delivered routinely by various space agencies. However, the
word "surface albedo" covers various meanings depending on the level of sophistication adopted to account for the coupling
between the bidirectional properties of the surface and the diffuse irradiance available at the bottom of the atmosphere.
This state of affairs renders the
use and intercomparison of these albedo products more difficult than would appear at first sight.This presentation will first
describe albedo as a problem involving the radiative coupling of the surface and the atmosphere, and then illustrate the
relationships linking the various albedo products currently available from various instruments. Once established, such
relationships allow to intercompare surface albedo products from MODIS, MISR and Meteosat. Preliminary results in this
direction will be shown. These efforts should prove useful to bridge the gap between the remote sensing derived products and
the modeling needs of the climate and hydrology community.
DE: 1800 HYDROLOGY
DE: 1640 Remote sensing
DE: 0315 Biosphere/atmosphere interactions
SC: Hydrology [H]
MN: 2004 AGU Fall Meeting