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Analysis of the sea-level variability along the Chinese coast and estimation of the impact of a CO2-perturbed atmospheric circulation Cover

Analysis of the sea-level variability along the Chinese coast and estimation of the impact of a CO2-perturbed atmospheric circulation

By:  and    
Open Access
|Jan 1998

Abstract

The relationship between monthly sea-level data measured at stations located along the Chinese coast and concurrent large-scale atmospheric forcing in the period 1960–1990 is examined. Itis found that sea-level varies quite coherently along the whole coast, despite the geographical extension of the station set. A canonical correlation analysis between sea-level and sea-level pressure (SLP) indicates that a great part of the sea-level variability can be explained by the action of the wind stress on the ocean surface. The relationship between sea-level and sea-level pressure is analyzed separately for the summer and winter half-years. In winter, one factor affecting sea-level variability at all stations is the SLP contrast between the continent and the Pacific Ocean, hence the intensity of the winter Monsoon circulation. Another factor that affects coherently all stations is the intensity of the zonal circulation at mid-latitudes. In the summer half year, on the other hand, the influence of SLP on sea-level is spatially less coherent: thes tations in the Yellow Sea are affected by a more localized circulation anomaly pattern, whereas the rest of the stations is more directly connected to the intensity of the zonal circulation. Based on this analysis, statistical models (different for summer and winter) to hind cast coastal sealevelanomalies from the large-scale SLP field are formulated. These models have been testedby fitting their internal parameters in a test period and reproducing reasonably the sea-level evolution in an independent period. These statistical models are also used to estimate thecontribution of the changes of the atmospheric circulation on sea-level along the Chinese coastin an altered climate. For this purpose the ouput of 150 year-long experiment with the coupled ocean-atmosphere model ECHAM1-LSG has been analyzed, in which the atmospheric concentrationof greenhouse gases was continuously increased from 1940 until 2090, according to the Scenario A projection of the Intergovermental Panel on Climate Change. In this experiment the meridional (zonal) circulation relevant for sea-level tends to become weaker (stronger) inthe winter half year and stronger (weaker) in summer. The estimated contribution of thisatmospheric circulation changes to coastal sea-level is of the order of a few centimeters at theend of the integration, being in winter negative in the Yellow Sea and positive in the China Seawith opposite signs in the summer half-year.

Language: English
Page range: 333 - 347
Submitted on: May 15, 1997
Accepted on: Jan 16, 1998
Published on: Jan 1, 1998
Published by: Stockholm University Press
In partnership with: Paradigm Publishing Services

© 1998 Maochang Cui, Eduardo Zorita, published by Stockholm University Press
This work is licensed under the Creative Commons Attribution 4.0 License.