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Theoretical and numerical estimation of ship-to-ship hydrodynamic interaction effects

机译:船对船水动力相互作用效应的理论和数值估计

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摘要

The main objective of this paper is to investigate theoretically and numerically how much interactions are expected between two ships travelling in waves. The theoretical estimation is based on asymptotic far-field wave patterns produced by a translating and oscillating source. The far-field wave pattern is governed by the parameter τ=ωeu0/g; For values of the parameter τ>0.25 there exist a fan-shaped quiescent region in front of the vessel. As τ increases, the range of the fan-shaped quiescent region will be expanded. The critical line between the quiescent and wake region can be estimated by the asymptotic expressions theoretically. It is expected that there is no hydrodynamic interaction if the two ships are located in each other's fan-shaped quiescent region. But due to the near-field local waves produced by the 3-D ships, the critical line could be different from that estimated from asymptotic wave pattern. Therefore, we developed a 3-D panel method based on Rankine-type Green function to investigate the hydrodynamic interaction effects for several combinations of parameters, including oscillation frequency, forward speed and transverse distance between two ships. Finally, the critical line calculated numerically was presented and compared to the theoretical estimation.
机译:本文的主要目的是在理论和数值上研究预期在波浪中航行的两艘船之间有多少相互作用。理论估计基于平移和振荡源产生的渐近远场波型。远场波形由参数τ=ωeu0/ g决定;对于参数τ> 0.25的值,在容器前面存在一个扇形的静态区域。随着τ的增加,扇形静态区域的范围将扩大。理论上,可以通过渐近表达式来估计静态和唤醒区域之间的临界线。如果两艘船位于彼此的扇形静态区域中,则预计不会发生流体动力相互作用。但是由于3-D舰船产生的近场局部波,临界线可能与渐近波型估计的临界线不同。因此,我们开发了一种基于兰金型格林函数的3-D面板方法,以研究多种参数组合的流体动力相互作用效应,包括振荡频率,前进速度和两艘船之间的横向距离。最后,提出了数值计算的临界线,并将其与理论估算值进行了比较。

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