李建成, 姜卫平, 章磊. 联合多种测高数据建立高分辨率中国海平均海面高模型[J]. 武汉大学学报 ( 信息科学版), 2001, 26(1): 40-45.
引用本文: 李建成, 姜卫平, 章磊. 联合多种测高数据建立高分辨率中国海平均海面高模型[J]. 武汉大学学报 ( 信息科学版), 2001, 26(1): 40-45.
LI Jiancheng, JIANG Weiping, ZHANG Lei. High Resolution Mean Sea Surface Over China Sea Derived from Multi-satellite Altimeter Data[J]. Geomatics and Information Science of Wuhan University, 2001, 26(1): 40-45.
Citation: LI Jiancheng, JIANG Weiping, ZHANG Lei. High Resolution Mean Sea Surface Over China Sea Derived from Multi-satellite Altimeter Data[J]. Geomatics and Information Science of Wuhan University, 2001, 26(1): 40-45.

联合多种测高数据建立高分辨率中国海平均海面高模型

High Resolution Mean Sea Surface Over China Sea Derived from Multi-satellite Altimeter Data

  • 摘要: 利用经过编辑和环境改正后的多代卫星测高资料,通过联合交叉点平差以削弱径向轨道误差和不同卫星测高任务之间的系统偏差等因素的影响,建立了中国海域及邻海(1°N~41°N,103°E~137°E) 2.5'× 2.5'平均海平面高模型,并将其与CLS-SHOM98.2、GFZMSS95A和OSUMSS95平均海平面高模型进行了比较。

     

    Abstract: Referenced to an earth ellipsoid,Mean Sea Surface(MSS) is made up of geoid and the dynamic ocean topography.So a high resolution and high quality MSS is a very valuable surface for geodesists and geophysicists.Because the instantaneous sea surface height(SSH) above a reference ellipsoid can be computed from satellite altimetry,MSS is derived from it.Several mean sea surfaces have been computed using satellite altimeter data and widely used.After reducing the geophysical and environment corrections,it is very important that reducing systematic biases between the missions and the residual orbit errors in the data. Based on the editions and geophysical corrections of multi-satellite altimeter data(3-year T/P data,4-year ERS-2/35 data,2-year GEOSAT/ERM data and 1-year ERS-1/168 Geodetic Mission data),the orbit accuracy of ERS-2,GEOSAT/ERM data and ERS-1/168 geodetic mission data by using combined crossover adjustment with fixing the T/P mean orbits are improved,and the 2.5'×2.5'MSS model of China sea and its adjacent sea areas(1°N~41°N,103°E~137°E) is obtained.For reducing the magnitude of the errors caused by time variations,all repeat cycles data are averaged into mean tracks respectively.After averaging,the Root Mean Square(RMS) values of the differences between the sea surface heights at the crossover points for T/P,ERS-2,and GEOSAT are from 0.099m,0.211m and 0.188m to 0.026m,0.080m and 0.099m respectively.Because of systematic biases between the missions and the residual orbit errors in the data,ERS-2,GEPSAT/ERM data and ERS-1/168 Geodetic Mission data were adjusted to the TOPEX 3-year mean tracks.After multi-mission crossover adjustment,the RMS values of the differences between the sea surface heights at the crossover points for ERS-2,GEOSAT and ERS-1 are 0.046,0.065 and 0.142 respectively.To compute the grid surfaces using the altimetric height as observations,the SHEPARD method was implemented.The MSS model is compared with the CLS-SHOM98.2,GFZ MSS95A and OSU MSS95 model respectively,the corresponding RMS of the respective difference 0.138m,0.298m and 0.120m,and the corresponding Standard Deviation(STD) of the respective difference is 0.129m,0.152m and 0.098m.

     

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