首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >NUMERICAL CALCULATION OF THE VISCOUS HYDRODYNAMIC FORCES ON A KVLCC HULL SAILING ALONG CHANNEL BANK
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NUMERICAL CALCULATION OF THE VISCOUS HYDRODYNAMIC FORCES ON A KVLCC HULL SAILING ALONG CHANNEL BANK

机译:KVLCC船体航道沿岸粘性水动力的数值计算。

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In restricted waters, ships often need to navigate along banks of the waterways. In such case, the hydrodynamic lateral force and yaw moment acting on the ships will be induced due to the asymmetric flow about the ship hull. Accurately predicting these force and moment is of practical significance to ensure a safe navigation and can provide some guidance on correct manoeuvring and control of ships in restricted waters. In the present paper, to study the bank effects on the hydrodynamic forces acting on a ship manoeuvring in restricted waters, the viscous flow around an unappended ship sailing in a straight course along the channel bank and simultaneously undergoing sway motion is numerically simulated by using a CFD-based viscous flow solver. The steady and unsteady RANS equations in conjunction with a RNG k-e turbulence model are solved by using the dynamic mesh technique and UDF (User-Defined Function). Numerical study is conducted for a KVLCC model. The hydrodynamic lateral force and yaw moment acting on the hull are calculated at different ship-to-bank distance and different water depth. By comparing the numerical results, the effects of ship-to-bank distance on the hydrodynamic forces are analyzed.
机译:在受限水域中,船舶通常需要沿着水路两岸航行。在这种情况下,由于绕船体的不对称流动,将引起作用在船上的水动力侧向力和偏航力矩。准确预测这些力和力矩对确保航行安全具有实际意义,并可以为在受限水域内正确操纵和控制船舶提供一些指导。在本文中,为研究堤岸对作用于受限水域中的船舶上的水动力的影响,通过使用a数值模拟了沿河岸沿直线航行并同时发生摇摆运动的无附加船周围的粘性流动。基于CFD的粘性流求解器。通过使用动态网格技术和UDF(用户定义函数)来求解稳态和非稳态RANS方程以及RNG k-e湍流模型。对KVLCC模型进行了数值研究。在不同的船对岸距离和不同的水深下,计算作用在船体上的流体动力横向力和偏航力矩。通过比较数值结果,分析了船岸距离对水动力的影响。

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