首页> 外文期刊>International Journal of Naval Architecture and Ocean Engineering >Parametric studies on sloshing in a three-dimensional prismatic tank with different water depths, excitation frequencies, and baffle heights by a Cartesian grid method
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Parametric studies on sloshing in a three-dimensional prismatic tank with different water depths, excitation frequencies, and baffle heights by a Cartesian grid method

机译:用不同水深,激发频率和挡板高度的三维棱镜罐中晃动的参数研究通过笛卡尔栅格方法

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This paper aims to numerically investigate violent sloshing in a partially filled three-dimensional (3D) prismatic tank with or without a baffle, further to clarify the suppressing performance of the baffle and the damping mechanism of sloshing. The numerical model is based on a Cartesian grid multiphase flow method, and it is well validated by nonlinear sloshing in a 3D rectangular tank with a vertical baffle. Then, sloshing in an unbaffled and baffled prismatic tank is parametrically studied. The effects of chamfered walls on the resonance frequency and the impact pressure are analyzed. The resonance frequencies for the baffled prismatic tank under different water depths and baffle heights are identified. Moreover, we investigated the effects of the baffle on the impact pressure and the free surface elevation. Further, the free surface elevation, pressure and vortex contours are analyzed to clarify the damping mechanism between the baffle and the fluid.
机译:本文旨在在具有或没有挡板的部分填充的三维(3D)棱柱形箱中的剧烈调查剧烈晃动,进一步阐明挡板的抑制性能和晃动的阻尼机构。 数值模型基于笛卡尔栅格多相流动方法,通过垂直挡板的3D矩形箱中的非线性晃动良好验证。 然后,参数研究了一个未挠性和挡板的棱柱形槽中的晃动。 分析了倒角壁对共振频率和冲击压力的影响。 鉴定了在不同水深和挡板高度下挡板棱柱罐的共振频率。 此外,我们研究了挡板对抗冲压压和自由表面升高的影响。 此外,分析自由表面升高,压力和涡旋轮廓以阐明挡板和流体之间的阻尼机构。

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