Long‐term and seasonal Caspian Sea level change from satellite gravity and altimeter measurements

Долгосрочные и сезонные изменения уровня Каспийского моря по данным спутниковых гравиметрических и альтиметрических измерений
Jianli Chen, Clark R. Wilson, B. D. Tapley, Himanshu Save, Jean‐François Crétaux
2017-02-20

Caspian Sea level changeGRACE satellite gravitymass concentration solutionssatellite radar altimetryspatial leakage correction
Abstract We examine recent Caspian Sea level change by using both satellite radar altimetry and satellite gravity data. The altimetry record for 2002–2015 shows a declining level at a rate that is approximately 20 times greater than the rate of global sea level rise. Seasonal fluctuations are also much larger than in the world oceans. With a clearly defined geographic region and dominant signal magnitude, variations in the sea level and associated mass changes provide an excellent way to compare various approaches for processing satellite gravity data. An altimeter time series derived from several successive satellite missions is compared with mass measurements inferred from Gravity Recovery and Climate Experiment (GRACE) data in the form of both spherical harmonic (SH) and mass concentration (mascon) solutions. After correcting for spatial leakage in GRACE SH estimates by constrained forward modeling and accounting for steric and terrestrial water processes, GRACE and altimeter observations are in complete agreement at seasonal and longer time scales, including linear trends. This demonstrates that removal of spatial leakage error in GRACE SH estimates is both possible and critical to improving their accuracy and spatial resolution. Excellent agreement between GRACE and altimeter estimates also provides confirmation of steric Caspian Sea level change estimates. GRACE mascon estimates (both the Jet Propulsion Laboratory (JPL) coastline resolution improvement version 2 solution and the Center for Space Research (CSR) regularized) are also affected by leakage error. After leakage corrections, both JPL and CSR mascon solutions also agree well with altimeter observations. However, accurate quantification of leakage bias in GRACE mascon solutions is a more challenging problem.
1
After correcting GRACE spherical-harmonic spatial leakage and accounting for steric and terrestrial-water effects, GRACE and altimetry agree at seasonal and longer timescales, including trends.
2
Caspian Sea level declined during 2002–2015 at a rate approximately 20 times greater than global mean sea-level rise.
3
Caspian Sea seasonal level fluctuations are substantially larger than those observed in the world’s oceans.
4
GRACE mascon solutions from JPL and CSR also agree well with altimetry after leakage correction, although quantifying mascon leakage bias remains challenging.
5
The agreement demonstrates that spatial-leakage correction is both feasible and essential for improving GRACE spherical-harmonic mass-change accuracy and spatial resolution.

Caspian Sea level and associated mass changes

Long-term and seasonal variability, trends, and the consistency of satellite altimetry and GRACE-derived mass estimates after accounting for spatial leakage and steric and terrestrial water effects

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2017-02-20
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Jianli Chen
Clark R. Wilson
B. D. Tapley
Himanshu Save
Jean‐François Crétaux
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