Parametric study for optimization of storage tanks considering sloshing phenomenon using coupled BEMaFEM
Evaluation of the fluid dynamic loads due to liquid sloshing in partially filled compartments is essential for designing a ship carrying liquids. Different geometric shapes such as rectangular, cylindrical, elliptical, spherical and circular conical have already been suggested for ship storage tanks...
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Veröffentlicht in: | Applied mathematics and computation 2013-11, Vol.224, p.123-139 |
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Hauptverfasser: | , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Evaluation of the fluid dynamic loads due to liquid sloshing in partially filled compartments is essential for designing a ship carrying liquids. Different geometric shapes such as rectangular, cylindrical, elliptical, spherical and circular conical have already been suggested for ship storage tanks by other researchers. In this paper, a new arrangement, i.e. trapezoidal containers was suggested for liquid storage tanks. The tank shape was optimized based on sloshing pressures and forces for a range of frequencies and amplitudes of sway motion and tank configuration. Considering the fluid to be incompressible and inviscid, Laplace equation and nonlinear free surface boundary conditions were used to model the sloshing phenomenon. A numerical model was developed based on coupled BEMaFEM to solve these equations. The model results were validated using available data from Nakayama and Washizu. The results showed that the suggested geometric shapes, not only have a maximum surrounded tank volume to the constant available volume, but also reduce the sloshing effects more efficiently than the available geometric shapes. |
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ISSN: | 0096-3003 |
DOI: | 10.1016/j.amc.2013.08.036 |