Assessment of near-shore currents from CryoSat-2 satellite in the Gulf of C´adiz using HF radar-derived current observations

Identificadores
URI: http://hdl.handle.net/10498/37946
DOI: 10.1016/J.RSE.2021.112310
ISSN: 0034-4257
Statistics
Metrics and citations
Metadata
Show full item recordDate
2021Department
Física AplicadaSource
Remote Sensing of Environment, Vol. 256, 2021Abstract
This study evaluated the possibility of studying mesoscale surface circulation in coastal areas, as is the Gulf of Cadiz, Spain, using high-resolution altimetry data (20-Hz of posting rate) along with the use of wind and bottom friction ageostrophic corrections. Absolute cross-track surface zonal current velocities, derived from filtered along-track CryoSat-2 SIRAL-SARM Absolute Dynamic Topography (ADT) measurements, are compared with high-frequency radar (HFR) data in the coastal area of the Gulf of Cadiz. The filter strategy followed in this study for the altimetry data is dependent on the HFR measurements for each track. Absolute surface geostrophic velocities obtained from 20-Hz altimetry data agree well HFR further than 25 km from the coast. Close to land ([3–25] km) the ageostrophic component of the surface current (due to the wind drag and the bottom friction) needs to be considered in the altimeter data. On average, the correlation between altimetry and HFR improved
from 0.61 (no correction) to 0.72 (correcting these effects). The root mean square error (RMSE) lowered from 12.54 cm⋅s2 1 to 7.35 cm⋅s2 1. Furthermore, it has also been demonstrated that corrected altimeter measurements are useful for the study of dynamics and patterns of coastal areas.
Subjects
Altimetry; Surface circulation; Coastal areas; CryoSat-2; HF radarCollections
- Artículos Científicos [11777]
- Articulos Científicos Fis. Ap. [311]
- Artículos Científicos INMAR [1027]





