An Engineering Computational Method of Calculating Wave Forces on the Mat and Platform's Sit-on-Bottom Stability |
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作者单位: | Gu Jianming Pan Bin Postgraduate,Dept. of Naval Architecture and Ocean Engineering,Shanghai Jiao Tong University,Shanghai Lecturer,Dept. of Naval Architecture and Ocean Engineering,Shanghai Jiao Tong University,Shanghai |
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摘 要: | - In this paper, an engineering method is employed to calculate the horizontal and vertical wave forces on the mat of the submersible platform under Froude-Krylov hypothesis. According to some model tests, appropriate diffraction coefficients are selected. And the results of the formulae given in the paper agree satisfactorily with those experimental data now available. The proposed computational method is effective and convenient to use in evaluating the horizontal and vertical wave forces on the mat. An exmaple is also given in this paper. Finally, the effects of the vertical wave force on the platorm's sit-on-bottom stability are analyzed.
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An Engineering Computational Method of Calculating Wave Forces on the Mat and Platform's Sit-on-Bottom Stability |
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Authors: | Gu Jianming Pan Bin Postgraduate Dept of Naval Architecture and Ocean Engineering Shanghai Jiao Tong University Shanghai Lecturer Dept of Naval Architecture and Ocean Engineering Shanghai Jiao Tong University Shanghai |
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Abstract: | - In this paper, an engineering method is employed to calculate the horizontal and vertical wave forces on the mat of the submersible platform under Froude-Krylov hypothesis. According to some model tests, appropriate diffraction coefficients are selected. And the results of the formulae given in the paper agree satisfactorily with those experimental data now available. The proposed computational method is effective and convenient to use in evaluating the horizontal and vertical wave forces on the mat. An exmaple is also given in this paper. Finally, the effects of the vertical wave force on the platorm's sit-on-bottom stability are analyzed. |
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Keywords: | submersible platform mat wave force sit-on-bottom stability computation |
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