首页> 外文会议>25th international conference on parallel computational fluid dynamics 2013 >Investigation of the Damping Moment Induced by a Forced Rolling Cylinder with Bilge Keels
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Investigation of the Damping Moment Induced by a Forced Rolling Cylinder with Bilge Keels

机译:带有舱底龙骨的强迫滚动油缸引起的阻尼力矩的研究

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In this paper, 2D nonlinear viscous flow caused by rolling motion of submerged cylinder with and without bilge keels are simulated using the finite-volume method in order to investigate the relationship between the damping moment induced by the bilge keel and the width of the bilge keel. The cylinder is submerged far away from the free surface to eliminate the interaction of the cylinder and the surface wave induced by the motion of it, and in this way, the damping moments obtained are caused by the cylinder and the bilge keels only. Verification and validation of the numerical results are performed in the conditions of different rolling periods and maximal rolling angles. Three parameters such as the width of the bilge keel, the rolling period and the maximal rolling angle are taken into account, and the effect of the width of the bilge keel is discussed. The analysis of the numerical result shows that there is a minimum effective width of the bilge keel, so the further research is performed, in which a result that the damping moment of the cylinder with the given bilge keels is less than the one without bilge keels is discovered. The calculation data is analyzed in detail, and the reason is discussed by the investigation of the damping moment components in the different conditions. After that, the damping moments of the cylinder with different bilge keel width in different conditions are calculated and compared. The result of the systematic research shows that the damping moment of the submerged cylinder with bilge keels increases nonlinearly while the width of the bilge keel increases linearly when the width of bilge keel is larger than the minimum effective width.
机译:本文利用有限体积法模拟了有底和无底龙骨的浸没圆柱体的滚动运动引起的二维非线性粘性流动,以研究由底龙骨引起的阻尼力矩与底龙骨宽度之间的关系。 。汽缸浸没在远离自由表面的位置,以消除汽缸和由其运动引起的表面波的相互作用,这样,获得的阻尼力矩仅由汽缸和舱底龙骨引起。在不同的轧制周期和最大轧制角的条件下进行数值结果的验证和确认。考虑了舱底龙骨的宽度,轧制周期和最大轧制角这三个参数,并讨论了舱底龙骨宽度的影响。数值结果分析表明,舱底龙骨的最小有效宽度,因此进行了进一步的研究,结果是给定舱底龙骨的气缸的阻尼力矩小于无舱底龙骨的阻尼力矩。被发现。对计算数据进行了详细分析,并通过研究不同条件下的阻尼力矩分量来讨论其原因。然后,计算并比较了不同工况下具有不同舱底龙骨宽度的圆柱体的阻尼力矩。系统研究的结果表明,当舱底龙骨的宽度大于最小有效宽度时,带有舱底龙骨的潜油缸的阻尼力矩非线性增加,舱底龙骨的宽度线性增加。

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