首页> 外文期刊>The Transactions of the Royal Institution of Naval Architects,Part A:International journal of maritime engineering >OPERATION OF RIDE CONTROL SYSTEMS TO MINIMISE SLAMMING OF WAVE-PIERCING CATAMARANS
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OPERATION OF RIDE CONTROL SYSTEMS TO MINIMISE SLAMMING OF WAVE-PIERCING CATAMARANS

机译:骑行控制系统的运行,以最大限度地减少波纹刺穿筏的抨击

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摘要

Wave slam produces dynamic loads on the centre bow of wave piercing catamarans that are related to the relative vertical motion of the bow to the encountered wave surface. Rapid slam forces arise when the arch sections between centre bow and main hulls fill with rising water. In this paper time domain solutions for high speed ship motion in waves, including the action of active motion controls, are used to compute the slam forces. Slamming occurs at specific immersions of the bow whilst the peak slam force is characterised by the maximum relative vertical velocity of the bow during bow entry. Vertical motions of bow and encountered wave are in antiphase at encounter frequencies where slamming is most severe. The range of encounter frequencies where slamming occurs increases with wave height. Wave slam loads reduce ship motions, the heave motion being most reduced. Deployment of a fixed, inactive T-foil can reduce slamming loads by up to 65 %. With active controls peak slamming loads on the bow can be reduced by up to 73% and 79% in 4 m and 3 m seas, local control feedback being marginally the most effective mode of control for reduction of slamming.
机译:波浪Slam在波刺脚筏的中心弓上产生动态载荷,这些散域与弓形到遇到的波表面的相对垂直运动有关。当中心弓和主船体之间的拱形部分填充水时,突出的猛力力量会出现。在本文中,用于在波浪中的高速船舶运动的域解决方案,包括主动运动控制的动作,用于计算猛力力。在弓的比沉浸处发生砰的一步,而峰值力的特征在于弓进入期间弓的最大相对垂直速度。弓形和遇到的波浪的垂直运动在遇到频率的抗血液中,砰的频率最严重。陷入扰动的遇到频率范围随波高而增加。波浪船负荷减少船舶运动,升降动作最小。固定的不活性T型的部署可以将砰的载荷减少高达65%。随着活性控制峰值柱塞峰值的峰值可以减少高达4米和3米和3米的73%和79%,局部控制反馈略有下降最有效的控制模式,减少恐怖的控制。

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