Publications des scientifiques de l'IRD

Carriere S. D., Loiseau B., Champollion C., Ollivier Chloé, Martin-StPaul N. K., Lesparre N., Olioso A., Hinderer J., Jougnot D. (2021). First evidence of correlation between evapotranspiration and gravity at a daily time scale from two vertically spaced superconducting gravimeters. Geophysical Research Letters, 48 (24), p. e2021GL096579 [8 p.]. ISSN 0094-8276.

Titre du document
First evidence of correlation between evapotranspiration and gravity at a daily time scale from two vertically spaced superconducting gravimeters
Année de publication
2021
Type de document
Article référencé dans le Web of Science WOS:000735897000026
Auteurs
Carriere S. D., Loiseau B., Champollion C., Ollivier Chloé, Martin-StPaul N. K., Lesparre N., Olioso A., Hinderer J., Jougnot D.
Source
Geophysical Research Letters, 2021, 48 (24), p. e2021GL096579 [8 p.] ISSN 0094-8276
Estimating evapotranspiration (ET) is a primary challenge in modern hydrology. Hydrogravimetry is an integrative approach providing highly precise continuous measurement of gravity acceleration. However, large-scale effects (e.g., tides, polar motion, atmospheric loading) limit the fine time-scale interpretation of the gravity data and processing leads to residual signal noise. To circumvent this limitation, we exploited the difference between two superconducting gravimeters (SGs) vertically spaced by 512 m. The gravity difference allows to remove common large-scale effects. Daily variation of the gravity difference is significantly correlated with daily evapotranspiration as estimated using the water balance model SimpKcET (p-value = 4.10(-10)). However, this approach is effective only during rain-free periods. In the future, comparison with direct ET measurements (e.g., eddy-covariance, scintillometer) may confirm and strengthen our interpretation. Improved hydrogravimetric data processing could extend the proposed approach to other experimental sites equipped with a single SG.
Plan de classement
Hydrologie [062] ; Bioclimatologie [072]
Description Géographique
FRANCE ; ZONE MEDITERRANEENNE ; FONTAINE DE VAUCLUSE
Localisation
Fonds IRD [F B010083891]
Identifiant IRD
fdi:010083891
Contact