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THE MOTIONS OF A SHIP ON A SLOPED SEABED

机译:船舶在斜坡上的运动

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摘要

In standard diffraction theory it is assumed that the water depth is constant and that the seabed is infinitely large. To account for a local varying bathymetry in shallow water (as it can occur for offshore LNG terminals) it is sometimes considered to introduce a second fixed body on the seabed representing this bathymetry in diffraction theory. Based on the results presented in this paper it can be concluded that this is (without special measures) not possible. The refraction and interference effects are too strong and affect the wave exciting forces on the LNG carrier in an incorrect way. A large size of the second body and smoother edges of this body do not improve the situation. However, a second body in diffraction theory, when chosen properly with respect to size and shape, can contribute to the correct calculation of the added mass and damping of vessels on sloped seabeds as this varies with the local water depth over the length of the vessel. This will clearly affect the motion response of the vessel. This can be seen for instance in the pitch-heave coupling. This will influence the motions of the ship in waves, as well as the resulting drift forces and related mooring loads.
机译:在标准衍射理论中,假设水深恒定且海床无限大。为了解决浅水中局部变化的测深法(因为在海上LNG接收站可能发生),有时考虑在海床上引入第二个固定体,以衍射理论表示这种测深法。根据本文提供的结果,可以得出结论:(没有特殊措施)这是不可能的。折射和干涉作用太强,以不正确的方式影响LNG载体上的波激发力。第二个主体的较大尺寸和该主体的较平滑边缘不会改善这种情况。但是,如果根据尺寸和形状进行适当选择,则绕射理论中的第二物体可以有助于正确计算附加质量和倾斜海床上船只的阻尼,因为这随船只长度随局部水深而变化。这将明显影响血管的运动响应。例如,在变桨耦合中可以看到这一点。这将影响船舶在波浪中的运动,以及由此产生的漂移力和相关的系泊载荷。

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