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MEAN SEA LEVEL AND SEA SURFACE VARIABILITY OF NQRTHWEST PACIFIC OCEAN AND EASTERN CHINA SEAS FROM GEOSAT ALTIMETRY 被引量:1

MEAN SEA LEVEL AND SEA SURFACE VARIABILITY OF NORTHWEST PACIFIC OCEAN AND EASTERN CHINA SEAS FROM GEOSAT ALTIMETRY
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摘要 Collinear analysis technique is widely used for determining sea surface variability with Geosat altimeterdata from its Exact Repeat Mission(ERM).But most of the researches have been only on global scaleor in oceans deeper than 2000 m.In shallow shelf waters this method is hampered by the inaccuracy ofocean tide data supplied with Geosat Geophysical Data Records(GDRs).This work uses a modified collinearanalysis technique characterized by simultaneous separation of mean sea level and ocean tide with theleast squares method,to compute sea surface variability in the Northwest Pacific Ocean and eastern ChinaSeas.The mean sea level map obtained contains not ouly bathymetric but also dynamic features such asamphidromes,indicating considerable improvement over previous works.Our sea surface variability mapsshow clearly the main current system,the well-known Zhejiang coastal upwelling,and a northern East Chi-na Sea meso-scale eddy in good agreement with satellite sea surface temperature(SST)observation and Collinear analysis technique is widely used for determining sea surface variability with Geosat altimeter data from its Exact Repeat Mission (ERM). But most of the researches have been only on global scale or in oceans deeper than 2000 m In shallow shelf waters this method is hampered by the inaccuracy of ocean tide data supplied with Geosat Geophysical Data Records (GDRs). This work uses a modified collinear analysis technique characterized by simultaneous separation of mean sea level and ocean tide with the least squares method, to compute sea surface variability in the Northwest Pacific Ocean and eastern China Seas. The mean sea level map obtained contains not only bathymetric but also dynamic features such as amphidromes, indicating considerable improvement over previous works. Our sea surface variability maps show dearly the main current system, the well-known Zhejiang coastal upwelling, and a northern East China Sea meso-scale eddy in good agreement with satellite sea surface temperature (SST) bservation and historical in situ measurement. These all suggest that meaningful and reliable oceanographic results can still be achieved in shallow shelf waters from Geosat altimetry as long as proper data processing techniques are applied.
作者 陈戈 贺明霞
出处 《Chinese Journal of Oceanology and Limnology》 SCIE CAS CSCD 1994年第2期154-164,191,共12页 中国海洋湖沼学报(英文版)
基金 This Work was partly supported by the Youth Science Foundation of Ocean University of Qingdao.
关键词 mean SEA level SEA surface VARIABILITY GEOSAT ALTIMETRY the China SEAS mean sea level, sea surface variability, Geosat, altimetry, the China Seas
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参考文献1

  • 1Hu Dunxin. Upwelling and sedimentation dynamics[J] 1984,Chinese Journal of Oceanology and Limnology(1):12~19

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  • 1CHEN Ge & LIN Hui1. Laboratory of Remote Sensing Information Science, Institute of Remote Sensing Applications, Chinese Academy of Sciences, Beijing 100101, China,2. Ocean Remote Sensing Institute, Ocean University of Qingdao, Qingdao 266003, China,3. CAS/CUHK Joint Laboratory for Geo-Information Science and Department of Geography, the Chinese University of Hong Kong, Shatin, New Territories, Hong Kong, ChinaCorrespondence should be addressed to Chen Ge.Observing seasonal variations of sea surface wind speed and significant wave height using TOPEX altimetry[J].Chinese Science Bulletin,2000,45(14):1323-1328.

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