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A New Multigrid 3D-VAR Optimization Method for Bottom Friction Using HF Radar Current Observation

作者:ZHANG; Xiaoshuang; WU; Xinrong; LI; We...multigridoptimizationradialcurrentvelocitybottomfriction

摘要:This paper proposes a new method for data assimilation of the surface radial current observed by High Frequency ground wave radar and optimization of the bottom friction coefficient.In this method,the shallow water wave equation is introduced into the cost function of the multigrid three-dimensional variation data assimilation method as the weak constraint term,the surface current and the bottom friction coefficient are defined as the analytical variables,and the high spatiotemporal resolution surface radial flow observed by the high-frequency ground wave radar is used to optimize the surface current and bottom friction coefficient.This method can effectively consider the spatiotemporal correlation of radar data and extract multiscale information from surface radial flow data from long waves to short waves.Introducing the shallow water wave equation into the cost function as a weak constraint condition can adjust both the momentum and mass fields simultaneously to obtain more reasonable analysis information.The optimized bottom friction coefficient is introduced into the regional ocean numerical model to carry out numerical experiments.The test results show that the bottom friction coefficient obtained by this method can effectively improve the accuracy of the numerical simulation of sea surface height in the offshore area and reduce the simulation error.

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中国海洋大学学报·自然科学版

《中国海洋大学学报·自然科学版》(CN:37-1414/P)是一本有较高学术价值的大型月刊,自创刊以来,选题新奇而不失报道广度,服务大众而不失理论高度。颇受业界和广大读者的关注和好评。 《中国海洋大学学报·自然科学版》主要刊登理、工、农(水产)、医(药)等涉海相关领域中具有原创性的科技论文。坚持为理论研究、高技术开发、成果转化等专家学者、科技工作者服务,以理论研究和知识创新为主导,兼顾应用于开发等国内、国际的最新研究成果。

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