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The effect of centre bow and wet-deck geometry on wet-deck slamming loads and vertical bending moments of wave-piercing catamarans

机译:中心弓和湿甲板的几何形状对冲浪双体船的湿甲板撞击载荷和垂直弯矩的影响

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An experimental study was performed to determine the influence of centre bow length and tunnel height on the magnitude of the wave slamming loads and bending moments acting on a 112 m Incat wave-piercer catamaran vessel. A 2.5 m hydroelastic segmented catamaran model was tested in regular head sea waves at a high model speed in multiple test series, whilst five centre bow (CB) and wet-deck configurations were considered, designated here as the parent, low, high, long and short CBs. The model global motions, centre bow slam loads, accelerations, and slam induced vertical bending moments of the catamaran model in waves were measured. It was found that the slamming force, the centre bow entry force and slam induced bending moment all increase as the centre bow length increases. Increasing the wet-deck height increased the motions but reduced the maximum slam load in moderate waves. It was seen that the short CB was the best design for the alleviation of slam loads. The high CB was the second best choice for operation in moderate waves but it was the worst configuration in terms of heave and pitch motions among various CB configurations tested.
机译:进行了一项实验研究,以确定中心船首长度和隧道高度对作用在112 m Incat穿波双体船上的波浪撞击载荷和弯矩的大小的影响。一个2.5 m的水弹性分段双体船模型在多个测试系列的常规航向海浪中以较高的模型速度进行了测试,同时考虑了五个中心船首(CB)和湿甲板构型,此处指定为母船,低,高,长和短期牛熊证。测量了双体模型在波浪中的模型整体运动,中心弓撞击力,加速度和撞击引起的垂直弯曲力矩。结果发现,随着中心弓长度的增加,砰击力,中心弓进入力和猛击引起的弯矩都增加。增加湿甲板的高度会增加运动,但会减少中等波浪中的最大猛击负荷。可以看出,较短的断路器是减轻冲击载荷的最佳设计。高CB是在中等波浪条件下运行的第二最佳选择,但就所测试的各种CB配置而言,就起伏和俯仰运动而言,它是最差的配置。

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