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Data assimilation of tides in the Bohai Sea using the adjoint method

机译:使用伴随方法的渤海潮汐数据同化

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The two-dimensional data assimilation model of the tides in the Bohai Sea was established using the ajoint method to study the tides of the Bohai Sea. The adjoint equations were derived from the two-dimensional tidal equations by Lagrange multiplier method. The observation data were from the tidal gauge stations and the satellite altimetry data. To evaluate the role of the altimetry data and the tidal gauge data in the data assimilation of the tides in the Bohai Sea, three numerical experiments were carried out. Experiment 1 only assimilates the tidal gauge data, Experiment 2 only assimilates the altimetry data, and Experiment 3 assimilates the combined data of the tidal gauge stations and the satellite altimetry. The tidal constituents M_2, S_2, K_1 and O_1 of the Bohai Sea were simulated. The results show that it is better when assimilating the tidal gauge data and the altimetry data simultaneously than assimilating any one separately. The mean absolute differences of the amplitude and phase-lag are 1.52 cm and 2.22° for M_2, 1.26 cm and 3.30° for S_2, 1.19 cm and 2.72° for K_1, 0.55 cm and 1.93° for O_1, respectively. The results reflect the tidal system of the Bohai Sea well, especially for the outer sea area since the altimetry data were assimilated.
机译:渤海潮汐二维数据同化模型采用Ajoint方法研究了渤海的潮汐。通过拉格朗日乘法器方法从二维潮汐方程导出伴随方程。观察数据来自潮汐量站和卫星高度测量数据。为了评估高度数据和潮汐量数据在渤海潮汐数据同化中的作用,进行了三个数值实验。实验1仅吸收潮汐量表数据,实验2仅吸收了高度测量数据,实验3吸收了潮汐量电台和卫星高度偏移的组合数据。模拟了渤海的潮汐组分M_2,S_2,K_1和O_1。结果表明,在同时同时同时同时同时吸收潮汐计数据和高度偏移数据时更好。对于K_1,0.55cm和1.93°,S_2,1.26cm和3.30°的M_2,1.26cm和3.30°的M_2,1.26和3.30°的平均绝对差异分别为0.52厘米,为0.55厘米和2.72°。结果反映了渤海的潮汐系统,特别是由于Altimetry数据被同化的外地区域。

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