首页> 外文期刊>Journal of offshore mechanics and arctic engineering >On the Interaction of Waves With Intake/Discharge Flows Originating From a Freely-Floating Body
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On the Interaction of Waves With Intake/Discharge Flows Originating From a Freely-Floating Body

机译:波与自由漂浮体产生的进/出水流的相互作用

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A linear theory is developed to obtain the motions of a two-dimensional, freely floating body (from which steady intake/discharge flows originate) that encounters incoming waves. The boundary-value problem is formulated within the assumptions of linear potential theory by decomposing the total potential into its oscillatory and steady components. The steady potential is further decomposed into the double-model and perturbation potentials. The time-harmonic potential is coupled with the steady potential through the free-surface condition. The potentials are obtained by use of the quadratic boundary-element method based on the Rankine source. The effect of the steady intake/discharge flows on the diffraction loads, hydrodynamic force coefficients, as well as the motions of a two-dimensional prismatic body floating on the free surface are presented. It is shown that the exciting wave forces and the hydrodynamic coefficients other than the damping coefficients are not appreciably affected in the case of low intake/discharge Froude numbers that are estimated, for example, for a 100 MW floating OTEC plant.
机译:发展了线性理论来获得遇到入射波的二维自由浮动物体(产生稳定的进气/排气流)的运动。边值问题是在线性电势理论的假设下制定的,方法是将总电势分解为其振荡和稳定分量。稳态势进一步分解为双模势和扰动势。时谐电位通过自由表面条件与稳定电位耦合。通过使用基于兰金源的二次边界元方法获得电势。给出了稳定的进气/排气流对衍射载荷,流体动力系数以及漂浮在自由表面上的二维棱柱体的运动的影响。结果表明,在低进气/排气弗洛德数的情况下,例如对于100 MW浮动OTEC装置,激发波力和阻尼系数以外的流体力学系数均未受​​到明显影响。

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