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THREE-DIMENSIONAL EFFECTS FOR A SHIP EXPERIENCING LARGE AMPLITUDE ROLL MOTION

机译:船舶大幅度滚动运动的三维效应

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Recent advancements have been made to consider the effects of large amplitude motions for roll damping models used for numerical ship motion performance assessments. These advancements have been focused on the development and expansion of models for potential flow simulation tools with sectional formulations. However, additional 3D effects due to vortex shedding, flow convection downstream, waves, and bilge keel emergence and submergence during large roll motion may be important, but are typically neglected in the sectional formulations. A series of RANS computations were performed for both 2D and 3D conditions of large amplitude ship roll motion, with and without forward speed, and in calm water and in waves. Comparisons were made to available experimental data for the 2D calm water conditions at zero-speed. These results were then assessed with the 3D conditions to develop improved understanding of additional 3D effects, including forward speed and waves, which should be considered for future developments of strip-theory approaches for ship motions prediction.
机译:对于用于数值船舶运动性能评估的侧倾阻尼模型,已经考虑了大幅度运动的影响,取得了最新进展。这些进展一直集中在开发和扩展具有分段公式的潜在流量模拟工具的模型上。但是,在大的侧倾运动过程中,由于涡旋脱落,下游流动对流,波浪和舱底龙骨的出现和浸入而产生的其他3D效果可能很重要,但通常在截面公式中被忽略。针对大振幅船舶侧倾运动的2D和3D条件(在有无前进速度的情况下)以及在平静的水中和波浪中进行了一系列RANS计算。比较了零速2D静水条件下的可用实验数据。然后,在3D条件下评估这些结果,以加深对其他3D效果的理解,包括前进速度和波浪,这对于将来用于船舶运动预测的条带理论方法的发展应予以考虑。

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