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Application of the Three-Dimensional Shallow Sea and Continental Shelf Mode for Inversion of Undercurrent 被引量:1

Application of the Three-Dimensional Shallow Sea and Continental Shelf Mode for Inversion of Undercurrent
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摘要 Abstract. Due to the incapability of high frequency surface wave radar (HFSWR) to detect undercurrent parameters, a new algorithm is proposed to apply a three-dimensional (3D) nonlinear barotropic shallow sea and continental shelf model in coordinate system to the inversion of undercurrent. The calculation domain of this model is the area detected by HFSWR. Considering the benthal topography of the detected area and the ocean dynamic parameters, such as surface current, wind and wave detected by HFSWR, the relation between surface current and undercurrent is established in this model, Accordingly, the undercurrent parameters of corresponding area are obtained. The inversion results agree with the law of ocean dynamics and reproduce the movement of undercurrent. Abstract. Due to the incapability of high frequency surface wave radar (HFSWR) to detect undercurrent parameters, a new algorithm is proposed to apply a three-dimensional (3D) nonlinear barotropic shallow sea and continental shelf model in coordinate system to the inversion of undercurrent. The calculation domain of this model is the area detected by HFSWR. Considering the benthal topography of the detected area and the ocean dynamic parameters, such as surface current, wind and wave detected by HFSWR, the relation between surface current and undercurrent is established in this model, Accordingly, the undercurrent parameters of corresponding area are obtained. The inversion results agree with the law of ocean dynamics and reproduce the movement of undercurrent.
出处 《Wuhan University Journal of Natural Sciences》 EI CAS 2006年第2期377-380,共4页 武汉大学学报(自然科学英文版)
基金 SupportedbytheNationalHighTechnologyDevelopmentProgramofChina(2001AA631050)
关键词 shallow sea and continental shelf model high frequency surface wave radar ocean dynamics INVERSION shallow sea and continental shelf model high frequency surface wave radar ocean dynamics inversion
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