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PISTON MODE AND SLOSHING RESONANCES IN A DAMAGED SHIP

机译:破损船舶的活塞模式和振动共振

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This work investigates the motions of a damaged ship in regular beam sea waves. The ship geometry including the damaged compartment (with opening) is modeled by using a unified approach called Hull Reshaped Method [ 1 ] and the hydrodynamic problem is solved by applying a 3D potential flow code. Linear hydrodynamic coefficients and excitation loads together with experimental nonlinear viscous roll damping are used in the calculations of the motion response functions. In addition to the natural roll resonance, the piston mode and sloshing resonances are numerically observed. By applying simplified theoretical analysis, these two resonances are further confirmed for a damaged ship with opening in the hull defined by the SOLAS rule 2. The resulting physical problems, for instance, dry bottom, roof impact and possible structural failure in the damaged compartment are predicted from the simulations.
机译:这项工作研究了受损船舶在规则波束海浪中的运动。使用称为船体整形方法[1]的统一方法对包括受损舱室(带有开口)的船舶几何模型进行建模,并通过应用3D潜在流代码解决流体动力问题。在运动响应函数的计算中,使用了线性流体动力系数和激励载荷以及实验性非线性粘性侧倾阻尼。除了自然的侧倾共振之外,还通过数值方式观察到活塞模式和晃荡共振。通过应用简化的理论分析,可以进一步确认SOLAS规则\ 2 \所定义的破损船体在船体中具有开口的两个共振。通过仿真可以预测由此产生的物理问题,例如,干燥的底部,屋顶的撞击以及损坏的车厢中可能出现的结构故障。

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