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J. -P. Boy

Publications and source records attributed to J. -P. Boy.

2 recordsLinked to original sources

Surface atmospheric pressure excitation of the translational mode of the inner core

Using hourly atmospheric surface pressure field from ECMWF (European Centre for Medium-Range Weather Forecasts) and from NCEP (National Centers for Environmental Prediction) Climate Forecast System Reanalysis (CFSR) models, we show that atmospheric pressure fluctuations excite the translational oscillation of the inner core, the so-called Slichter mode, to the sub-nanogal level at the Earth surface. The computation is performed using a normal-mode formalism for a spherical, self-gravitating anelastic PREM-like Earth model. We determine the statistical response in the form of power spectral densities of the degree-one spherical harmonic components of the observed pressure field. Both hypotheses of inverted and non-inverted barometer for the ocean response to pressure forcing are considered. Based on previously computed noise levels, we show that the surface excitation amplitude is below the limit of detection of the superconducting gravimeters, making the Slichter mode detection a challenging instrumental task for the near future.

physics.geo-ph

Atmospheric pressure loading for routine data analysis

We have computed 3-D displacements induced by atmospheric pressure loading from 6-hourly surface pressure field from NCEP (National Center for Environmental Predictions) Reanalysis data for all Very Long Baseline Interferometry) and SLR (Satellite Laser Ranging) stations. We have quantitatively estimated the error budget our time series of pressure loading and found that the errors are below 15%. We validated our loading series by comparing them with a dataset of 3.5 million VLBI observations for the period of 1980--2003. We have shown that the amount of power which is present in the loading time series, but does not present in the VLBI data is, on average, only 5%. We have also succeeded, for the first time, to detect horizontal displacements caused by atmospheric loading. The correction of atmospheric loading in VLBI data allows a significant reduction of baseline repeatability, except for the annual component.

physics.geo-ph