2010Unpublished venueRequires access

New method for reconstructing sea level from tide gauges using satellite altimetry

B. D. Hamlington, R. R. Leben, R. S. Nerem, Keunyoung Kim

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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.

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What this paper is about

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.

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Available 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.

Key concepts: Tide gauge, Satellite altimetry, Altimeter, Sea level, Satellite, Empirical orthogonal functions, Climatology, Geodesy

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