使用艉轴推进器的喷水动力船舶的抓蟹运动测试

Joopil Lee, Seung-Ho Ham
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摘要

本研究评估了喷水式舰船仅使用船尾推进器产生蟹行运动的可能性。在配备了三个艉推进器的海军舰艇 PKG(巡逻杀手导弹)上进行的实际海上试验验证了理论考虑因素。使用力平衡方程计算了控制力。结果表明,船体在风力影响下会出现旋转和横向移动。在风的作用下,左舷尾部呈现出向左转的趋势。出现这种现象的原因是船尾推进器产生的旋转力超过了船体产生的横向力,使得保持力平衡面临挑战。在海上试验中,船体旋转了 10°,横向移动了 10.8 米,纵向移动了 0.26 米。巨大的横向移动距离提供了切实的证据,证明仅使用船尾推进器就能实现船舶的捕蟹运动。这项研究为提高水刀船的机动性提供了宝贵的见解,为海军行动和海事活动提供了实际应用。
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Crabbing Motion Testing of Waterjet-Powered Ships Using Stern Thrusters
This study assessed the potential for crabbing motion in waterjet ships by exclusively employing stern thrusters. The theoretical considerations were validated through practical sea trials on the naval vessel PKG (Patrol Killer Guided missile) equipped with three stern thrusters. The control forces were calculated using the force equilibrium equation. The results showed that the hull exhibited rotations and lateral movements under wind influence. The port tail exhibited a leftward turning tendency due to the wind. This phenomenon arises from the dominance of the rotational force generated by the stern thruster over the lateral force exerted by the hull, making it challenging to maintain force equilibrium. In the sea trial, the hull rotated by 10° and moved 10.8 m laterally, with a longitudinal movement of 0.26 m. Remarkably, the lateral movement surpassed the longitudinal displacement, indicating the success of the trial. The substantial lateral travel distance provided tangible evidence that the crabbing motion of the ship is achievable using only stern thrusters. This study contributes valuable insights into enhancing the maneuverability of waterjet ships, offering practical applications for naval operations and maritime activities.
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