HR: 1340h
AN: G43B-0809 [Abstracts]
TI: PREDICTION OF UNIVERSAL TIME (UT1) FROM ATMOSPHERIC ANGULAR MOMENTUM
AU: gambis, d
EM: daniel.gambis@obspm.fr
AF: Observatoire de Paris, 61, av. de l'Observatoire, Paris, 75014
France
AU: * Bizouard, C
EM: christian.bizouard@obspm.fr
AF: Observatoire de Paris, 61, av. de l'Observatoire, Paris, 75014
France
AU: de Viron, O
EM: o.deviron@oma.be
AF: Observatoire Royal de Belgique, 3, av. Circulaire, Bruxelles, Belgique
Belgium
AB:
Accurate positioning by satellite (GPS, GLONASS, DORIS) requires prediction of Universal Time UT1, as do systems of
interplanetary spacecraft navigation. Below 10 days, the UT1 variations are mostly due to the exchange
of angular momentum between the atmosphere and the crust. Therefore UT1 predictions at these time scales can be based on the
predicted values of the axial Atmospheric Angular Momentum (AAM). Such values are derived daily by miscellaneous
meterorological centers over the 5-10 forthcoming days.
In the present study we characterize the quality of three current AAM forecasts, those of the U.S. National Centers for
Environmental Prediction, the European Centre for Medium-Range Weather Forecasts, and the United Kingdown Meteorological
Office. We analyze the associated prediction of UT1, especially compared to one determined without the use of any geophysical
information, namely based
classically on the EOP series history, and we check the skill of the current forecast procedure.
DE: 1704 Atmospheric sciences
DE: 1709 Geodesy
SC: Geodesy [G]
MN: 2004 AGU Fall Meeting