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首页> 外文期刊>Computer Modeling in Engineering & Sciences >Simulation of Sloshing Effect on Vessel Motions by Using MPS (Moving Particle Simulation)
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Simulation of Sloshing Effect on Vessel Motions by Using MPS (Moving Particle Simulation)

机译:使用MPS模拟运动对船舶运动的晃荡效应(运动粒子模拟)

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The coupling and interactions between vessel motion and inner-tank sloshing are investigated by a potential-CFD (Computational Fluid Dynamics) hybrid method in time domain. Potential-theory-based 3D diffraction/radiation panel program is used to obtain the hydrodynamic coefficients and wave forces for the simulation of vessel motion in time domain. The liquid sloshing in tanks is simulated in time domain by using the improved Moving Particle Simulation (PNU-MPS) method and it is validated through comparison against sloshing experiments. The calculated sloshing tank forces and moments are applied to the vessel-motion simulation as excitation forces and moments. The updated ship motion, which is influenced by sloshing-induced tank forces, is in turn inputted to the MPS system as forced motions. For the verification of the coupling, a barge-type FPSO hull with two partially filled inner tanks is selected and the numerically simulated results correlate well against the measurements done by MARIN for various fill ratios. It is seen both in prediction and experiment that the roll RAOs (Response Amplitude Operators) are sensitive to the amount of liquid cargo and can be increased by a factor of 2 or 3 in some wave frequency range compared to the bare-hull or rigid-cargo cases. It is also shown that the nonlinear sloshing effects can alter the vessel-motion characteristics in relatively high waves with the peak period close to sloshing natural frequencies.
机译:通过时域CFD(计算流体动力学)混合方法研究了船舶运动与内舱晃荡之间的耦合和相互作用。基于势能理论的3D衍射/辐射面板程序用于获得水动力系数和波力,用于在时域中模拟船舶运动。通过使用改进的运动粒子模拟(PNU-MPS)方法在时域中模拟罐中的液体晃荡,并通过与晃荡实验进行比较进行了验证。计算出的晃荡油缸力和力矩作为激励力和力矩应用于船舶运动仿真。受晃荡引起的油箱力影响的更新后的船舶运动又作为强制运动输入到MPS系统。为了验证联轴器,选择了带有两个部分填充内舱的驳船型FPSO船体,数值模拟结果与MARIN在各种填充率下的测量值具有良好的相关性。在预测和实验中都可以看到,滚动RAO(响应幅度算子)对液体货物的数量敏感,并且与裸机壳或刚性船体相比,在某些波浪频率范围内可以增加2或3倍。货箱。还显示出非线性晃动效应可以改变相对高波的血管运动特性,其峰值周期接近晃动固有频率。

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