We analyze more than 10 years of Global Positioning System (GPS) height residuals and vertical displacements predicted from surface mass loading observed by the Gravity Recovery and Climate Experiment (GRACE) for 36 International GNSS Service (IGS) stations over Europe. Seasonal surface displacements, mostly due to atmospheric and hydrological loading, are significant in both GPS and GRACE measurements. With an extended time period, our new analysis based on release 05 GRACE data from Center for Space Research (CSR) shows considerably improved agreement between GPS and GRACE than that from previous studies, for not only annual but also interannual signals. The GPS height residual series at most stations exhibit reduced weighted root-mean-sq...
International audienceNew satellite missions are returning high precision, time-varying, satellite m...
Gravitational potential data from GRACE are being used to study mass redistribution within and betwe...
The Gravity Recovery and Climate Experiment (GRACE) mission is able to observe the global large-scal...
We analyze more than 10 years of Global Positioning System (GPS) height residuals and vertical displ...
peer reviewedWe compare approximately 3 years of GPS height residuals (with respect to the Internati...
A good understanding of the accuracy of the Global Positioning System (GPS) surface displacements pr...
peer reviewedTemporal variations in the geographic distribution of surface mass cause surface displa...
International audienceWe model surface displacements induced by variations in continental water, atm...
International audienceSince the launch of the GRACE satellites in 2002, followed by GRACE-FO in 2018...
Hydrological processes cause variations in gravitational potential and surface deformations, both of...
Monitoring hydrological redistributions through their integrated gravitational effect is the primary...
Over the 15 years of the Gravity Recovery and Climate Experiment (GRACE) mission, various data proce...
Over the 15 years of the Gravity Recovery and Climate Experiment (GRACE) mission, various data proce...
International audienceSeasonal deformation related to mass redistribution on the Earth's surface can...
Hydrological processes cause variations in gravitational potential and surface deformations, both o...
International audienceNew satellite missions are returning high precision, time-varying, satellite m...
Gravitational potential data from GRACE are being used to study mass redistribution within and betwe...
The Gravity Recovery and Climate Experiment (GRACE) mission is able to observe the global large-scal...
We analyze more than 10 years of Global Positioning System (GPS) height residuals and vertical displ...
peer reviewedWe compare approximately 3 years of GPS height residuals (with respect to the Internati...
A good understanding of the accuracy of the Global Positioning System (GPS) surface displacements pr...
peer reviewedTemporal variations in the geographic distribution of surface mass cause surface displa...
International audienceWe model surface displacements induced by variations in continental water, atm...
International audienceSince the launch of the GRACE satellites in 2002, followed by GRACE-FO in 2018...
Hydrological processes cause variations in gravitational potential and surface deformations, both of...
Monitoring hydrological redistributions through their integrated gravitational effect is the primary...
Over the 15 years of the Gravity Recovery and Climate Experiment (GRACE) mission, various data proce...
Over the 15 years of the Gravity Recovery and Climate Experiment (GRACE) mission, various data proce...
International audienceSeasonal deformation related to mass redistribution on the Earth's surface can...
Hydrological processes cause variations in gravitational potential and surface deformations, both o...
International audienceNew satellite missions are returning high precision, time-varying, satellite m...
Gravitational potential data from GRACE are being used to study mass redistribution within and betwe...
The Gravity Recovery and Climate Experiment (GRACE) mission is able to observe the global large-scal...