A'/> Numerical study of ship motions and added resistance in regular incident waves of KVLCC2 model
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Numerical study of ship motions and added resistance in regular incident waves of KVLCC2 model

机译:KVLCC2模型的规则入射波中船舶运动和附加阻力的数值研究

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Abstract In this study, the numerical investigation of ship motions and added resistance at constant forward velocity of KVLCC2 model is presented. Finite volume CFD code is used to calculate three dimensional, incompressible, unsteady RANS equations. Numerical computations show that reliable numerical results can be obtained in head waves. In the numerical analyses, body attached mesh method is used to simulate the ship motions. Free surface is simulated by using VOF method. The relationship between the turbulence viscosity and the velocities are obtained through the standard k??? ε turbulence model. The numerical results are examined in terms of ship resistance, ship motions and added resistance. The validation studies are carried out by comparing the present results obtained for the KVLCC2 hull from the literature. It is shown that, ship resistance, pitch and heave motions in regular head waves can be estimated accurately, although, added resistance can be predicted with some error.
机译: 摘要 在这项研究中,对KVLCC2模型在恒定前进速度下的船舶运动和附加阻力进行了数值研究。有限体积CFD代码用于计算三维不可压缩的非稳态RANS方程。数值计算表明,在头波中可以获得可靠的数值结果。在数值分析中,采用体贴网格法模拟了船舶运动。使用VOF方法模拟自由表面。湍流粘度和速度之间的关系是通过标准k来获得的。 display =“ inline” overflow =“ scroll”> ε 湍流模型。根据船舶阻力,船舶运动和附加阻力检查了数值结果。通过比较从文献中获得的KVLCC2船体的当前结果,进行验证研究。结果表明,尽管可以预测出附加阻力,但可以准确估计常规头波中的船舶阻力,俯仰和升沉运动。

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