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The steering and course keeping qualities of high-speed craft and the inception of dynamic instabilities in the following sea

机译:高速航行器的转向和航向​​保持品质以及海底动荡的发生

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摘要

Small high-speed craft are the most vulnerable to the severity of the sea: achieving a design which pairs good performance and acceptable levels of safety is not a trivial task. The seakeeping and manoeuvrability of these vessels play a crucial role in following sea conditions: dynamic instabilities, namely broaching-to and surf-riding, are more than a rare eventuality and threaten the survivability of the vessel and the life of the mariners. This study investigates the effects of the steering qualities on the broaching-to behaviour of a high-speed craft when it is sailing in following and stern-quartering waves.The motions and loads of the vessel are simulated by means of a 3D time domain blended potential flow boundary element method (BEM), validated using captive model tests in regular waves carried out at the Seakeeping and Manoeuvring Basin (SMB) of MARIN. The hull directional stability and turning ability of the high-speed craft were artificially modified, showing that an increase in the directional stability as well as in the effectiveness of the steering can be beneficial to avoid the inception of broaching-to, but they have different consequences on the dynamics of the vessel's loss of control.
机译:小型高速船最容易受到海洋恶劣影响的影响:要实现将良好的性能和可接受的安全水平相结合的设计,并不是一件容易的事。这些船舶的海上维护和机动性在以下海况中起着至关重要的作用:动态不稳定性,即驶入和滑行,是极为罕见的事件,并威胁着船舶的生存能力和水手的生命。这项研究研究了转向质量对高速船在追尾和尾直四分之一波浪中航行时拉削行为的影响,并通过3D时域融合模拟了船舶的运动和载荷势流边界元法(BEM),在MARIN的海上航行和机动盆地(SMB)进行的常规波浪捕获实验中得到验证。人为地修改了高速航行器的船体方向稳定性和转向能力,这表明方向稳定性的提高以及操纵效率的提高可有助于避免拉削的发生,但是它们却有所不同对船舶失去控制动力的后果。

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