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A NUMERICAL CALCULATION OF HYDRODYNAMIC FORCES ON A SEAGOING SHIP BY 3-D SOURCE TECHNIQUE WITH FORWARD SPEED

机译:三维源技术与前进速度的海船流体动力的数值计算

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In this paper, the hydrodynamic forces of a surface ship advancing in waves at constant forward speed are numerically calculated by using the 3-D source distribution techniques. The paper also deals with the numerical calculations of free surface flow around an advancing ship in calm water as well as in waves. The body boundary condition is linearised about the undisturbed position of the body and the free surface condition is linearised about the mean water surface. The potential is represented by a distribution of sources over the surface of the ship and its waterline. The problem is solved by the method of singularities distributed over the hull surface. Hess & Smith method is used to obtain the density of these singularities. The numerical solution of the surface ship case is approximately obtained by considering the hull as a position of plane polygonal elements, bearing a constant singularity distribution. The velocity potential of any particular point in the free surface around the moving hull is determined by using the 3-D Green function with forward speed which satisfies the boundary conditions for a pulsating source in the fluid. Contours of wave patterns around moving surface ships are calculated from the velocity potential. The numerical accuracy of the computer code is firstly checked by calculating the velocity potential of a translating, pulsating unit source with arbitrary frequency and forward speed. Free surface wave patterns generated by a Wigley hull advancing with steady forward speed are calculated by using this code. Some corresponding hydrodynamic coefficients of heave and pitch modes for the Wigley hull has been calculated. Exciting forces and motion amplitudes are also investigated. The numerical result of this code is validated by comparing the calculated results with the experimental ones and those calculated by other methods. From the comparison, the results predicted by the present calculations are found in fairly good agreement with the experiment. Finally, the effects of motion amplitude on the free surface elevation are analyzed. These will be helpful for the accurate estimation of sea keeping problems for a ship advancing in waves.
机译:在本文中,通过使用3-D源分布技术来用恒定前进速度处于恒定前进速度的波浪中推进的表面船的流体动力。本文还涉及在平静的水中以及波浪中的前进船周围的自由表面流动的数值计算。围绕主体的未受干扰位置线性地发生体边界条件,并且围绕平均水表面线性化的自由表面状况。该潜力由船舶表面的源分布及其水线表示。通过分布在船体表面上的奇点的方法解决了问题。 Hess和Smith方法用于获得这些奇点的密度。通过将船体视为平面多边形元件的位置,横向地获得表面送壳壳体的数值溶液,其承载恒定的奇异性分布。通过使用具有前进速度的3-D绿色功能来确定移动船体周围的自由表面中的任何特定点的速度电位,该前速度满足流体中的脉动源的边界条件。移动表面船周围的波浪图案的轮廓由速度电位计算。通过计算具有任意频率和前进速度的平移,脉动单元源的速度电位,首先检查计算机代码的数值精度。通过使用此代码计算由Wigley Hull产生的自由表面波形,以稳定前进速度计算。已经计算了Wigley Hull的升降和俯仰模式的一些相应的流体动力系数。还研究了令人兴奋的力量和运动幅度。通过将计算结果与实验结果的结果与其他方法计算的结果进行比较来验证该代码的数值结果。从比较,目前计算预测的结果与实验相当愉快地发现。最后,分析了运动幅度对自由表面升高的影响。这些将有助于准确估算海上船舶在波浪中推进的船舶。

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