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Study on sloshing in cargo tanks including hydroelastic effects

机译:包括水弹性效应在内的液货舱晃荡研究

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The sloshing problem in cargo tanks is studied through experiments and numerical analysis. The fluid motion is described using a higher-order boundary element method and the structural response by a thin plate theory. It was found that hydraulic jumps are formed when the excitation frequency is close to the resonance frequency in the case of low filling depth. In the resonance frequency in the case of low filling depth. In the case of high filling depth, the flow resonates and hits the top of the tank, thus inducing a large impact pressure. The pressure on the flexible plate shows amplified initial peaks followed by oscillatory components, the frequency of which coincides with the natural frequencies of the plate in water as a result of hydroelastic effects.
机译:通过实验和数值分析研究了液货舱内晃荡问题。使用高阶边界元方法描述流体运动,并通过薄板理论描述结构响应。已经发现,在低填充深度的情况下,当激励频率接近共振频率时,就会形成水力跳跃。在共振频率低的情况下填充深度。在高填充深度的情况下,流体产生共振并撞击储罐顶部,从而产生较大的冲击压力。柔性板上的压力显示出放大的初始峰值,其后是振荡分量,由于水弹性效应,其频率与水中的板的固有频率一致。

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