New method for reconstructing sea level from tide gauges using satellite altimetry
B. D. Hamlington, R. R. Leben, R. S. Nerem, Keunyoung Kim
Abstract
B. D. Hamlington, R. R. Leben, R. S. Nerem, Keunyoung Kim
Abstract
Cyclostationary empirical orthogonal functions, derived from satellite altimetry, are combined with historical sea level measurements from tide gauges to estimate nearly-global monthly sea level fields from 1900-2010. The reconstructed global mean sea level is shown to compare favorably with the satellite altimetry over the period from 1993-2010. The trend in global mean sea level for the fully reconstructed data record is 1.4 mm/yr. This reconstruction shows improvement over previously published reconstructions in its robust ability to capture sea level variability associated with the modulated annual cycle and El Nino-Southern Oscillation signals.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Cyclostationary empirical orthogonal functions, derived from satellite altimetry, are combined with historical sea level measurements from tide gauges to estimate nearly-global monthly sea level fields from 1900-2010. The reconstructed global mean sea level is shown to compare favorably with the satellite altimetry over the period from 1993-2010. The trend in global mean sea level for the fully reconstructed data record is 1.4 mm/yr. This reconstruction shows improvement over previously published reconstructions in its robust ability to capture sea level variability associated with the modulated annual cycle and El Nino-Southern Oscillation signals.
Key concepts: Tide gauge, Satellite altimetry, Altimeter, Sea level, Satellite, Empirical orthogonal functions, Climatology, Geodesy