Abstract. The axial component of the oceanic tidal angular momentum (OTAM) has been demonstrated tobe responsible for most of the diurnal and semidiurnal variations in Earth's rotational rate. In this paper we study the equatorial components of OTAM and their corresponding effects on the orientation of Earth's rotational axis, or polar motion. Three ocean tide models derived from TOPEX/Poseidon satellite altimetry are employed to predict the polar motion excited by eight major diurnal/semidiurnal tides (Q1, O1, P1, K1, N2, M2, $2, K2). The predictions are compared with geodetic measurements of polar motion from both long-term observations and during the intensive campaign Cont94. The prograde diurnal and prograde and retrograde se...
International audienceThe period of the polar motion resonance as estimated from luni-solar nutation...
International audienceThe nutation of the Celestial Intermediate Pole can be considered as a retrogr...
International audienceThe period of the polar motion resonance as estimated from luni-solar nutation...
Abstract. The oceanic tidal angular momentum (OTAM) has been demonstrated to be the primary cause fo...
copyrighted by American Geophysical UnionThe oceanic tidal angular momentum (OTAM) has\ud Been demon...
Abstract- Luni-solar tides affect Earth's rotation in a variety of ways. We give an overview of...
A quantitative study on the seasonal polar motion excitated by the atmospheric angular momentum (MM)...
Abstract. This paper describes the use of a global numerical model of the oceans to estilnate variat...
A model of diurnal and semi-diurnal variations in Earth rotation parameters (ERP) is constructed bas...
International audienceUntil now, the polar motion resonance (PMR) complex frequency has been determi...
International audienceUntil now, the polar motion resonance (PMR) complex frequency has been determi...
International audienceUntil now, the polar motion resonance (PMR) complex frequency has been determi...
International audienceUntil now, the polar motion resonance (PMR) complex frequency has been determi...
We revisit the problem of modeling the ocean’s contribution to rapid, non-tidal Earth rotation varia...
A number of ocean models of different complexity have been used to study changes in the oceanic angu...
International audienceThe period of the polar motion resonance as estimated from luni-solar nutation...
International audienceThe nutation of the Celestial Intermediate Pole can be considered as a retrogr...
International audienceThe period of the polar motion resonance as estimated from luni-solar nutation...
Abstract. The oceanic tidal angular momentum (OTAM) has been demonstrated to be the primary cause fo...
copyrighted by American Geophysical UnionThe oceanic tidal angular momentum (OTAM) has\ud Been demon...
Abstract- Luni-solar tides affect Earth's rotation in a variety of ways. We give an overview of...
A quantitative study on the seasonal polar motion excitated by the atmospheric angular momentum (MM)...
Abstract. This paper describes the use of a global numerical model of the oceans to estilnate variat...
A model of diurnal and semi-diurnal variations in Earth rotation parameters (ERP) is constructed bas...
International audienceUntil now, the polar motion resonance (PMR) complex frequency has been determi...
International audienceUntil now, the polar motion resonance (PMR) complex frequency has been determi...
International audienceUntil now, the polar motion resonance (PMR) complex frequency has been determi...
International audienceUntil now, the polar motion resonance (PMR) complex frequency has been determi...
We revisit the problem of modeling the ocean’s contribution to rapid, non-tidal Earth rotation varia...
A number of ocean models of different complexity have been used to study changes in the oceanic angu...
International audienceThe period of the polar motion resonance as estimated from luni-solar nutation...
International audienceThe nutation of the Celestial Intermediate Pole can be considered as a retrogr...
International audienceThe period of the polar motion resonance as estimated from luni-solar nutation...