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Computation of wet deck bow slam loads for catamaran arched cross sections

机译:双体船拱形横截面的湿甲板船首砰击荷载计算

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摘要

A computational model for catamaran wet deck slamming is developed on the basis of the variation of added mass as the hulls enter the water. In the case of a wave-piercing catamaran the bow cross section has a double arch cross section and slamming occurs when the arches fill. Residual air is entrained at the top of the arch due to bubble formation by turbulent mixing and this modifies the effect of the water added mass on the hull. The computational model therefore introduces a soft connection between the water added mass associated with the slam and the hull. The method has been evaluated by comparison with two-dimensional model drop tests in terms of the maximum forces and acceleration imposed on the hull, the variation of velocity during the slam event and the depth of penetration into the water. It is concluded that the added mass computation is adequate for slam modelling in global motions and loads calculations since it gives a good representation of the maximum total forces on the section and their duration.
机译:基于船体入水时附加质量的变化,建立了双体船湿甲板撞击的计算模型。在穿浪双体船的情况下,船首横截面具有双弓形横截面,当弓形填充时会发生砰击。由于湍流混合而形成气泡,残留空气被夹带在拱顶,这改变了加水质量对船体的影响。因此,计算模型在与满贯相关的加水质量和船体之间引入了软连接。通过与二维模型跌落试验进行比较,对该方法进行了评估,该试验涉及施加在船体上的最大力和加速度,大满贯事件中速度的变化以及渗透到水中的深度。结论是,增加的质量计算足以用于整体运动和载荷计算中的冲击模型,因为它可以很好地表示截面上的最大总力及其持续时间。

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