Effects of Hull Geometry and Tightness of Turns on Ship Maneuverability: An OSIS-IHI Simulation

M. Lau
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Abstract

OSIS-IHI (Ocean Structure Interaction Simulator – Ice-Hull Interaction) is a ship maneuvering in ice modeling software developed at OCRE for a marine simulator and ship performance assessment applications. A series of OSIS-IHI simulations is conducted to explain the maneuvering behavior observed of the USCGC Polar Icebreaker indicative design previously tested at the centre. The simulation is conducted with the original and a modified version of the USCGC Icebreaker Healy. The Icebreaker USCGC Healy was equipped with doublescrew conventional propellers. The hull geometry of the OSIS-Healy model is appropriately modified to mimic the hull form of two indicated design versions in question and its propulsion units replaced by twin pods prior to studying its maneuverability in order to shed light on the apparently poor maneuvering performance of the podded version of the indicative design. The modified version extends the mid-body leaving just 7.5 % of hull that constitutes the stern section. It is hypothesized that the extended mid-section cost large resisting moment against turning due to the increase of ice breaking at the aft shoulder and mid-body. This hypothesis is validated numerically to explain the poor maneuverability exhibited by the extended mid-body design, based on consideration of ice-hull interaction geometry and basic mechanics of ice breaking as well as existing anecdotal test evidences. This paper presents result of the simulation to explore effects of hull geometry and tightness of turns on ship maneuverability. Important insights gained are summarized and recommendation for further work given.
船体几何形状和转弯紧密性对船舶操纵性的影响:一个sis - ihi仿真
OSIS-IHI(海洋结构相互作用模拟器-冰-船体相互作用)是OCRE为船舶模拟器和船舶性能评估应用开发的船舶机动冰建模软件。为了解释先前在中心测试的USCGC极地破冰船指示设计所观察到的机动行为,进行了一系列的OSIS-IHI模拟。模拟是用USCGC破冰船Healy的原始版本和改进版本进行的。破冰船USCGC Healy配备了双螺旋桨常规螺旋桨。osi - healy模型的船体几何形状被适当修改,以模仿有问题的两种指示设计版本的船体形状,并在研究其机动性之前将其推进单元替换为双吊舱,以便阐明指示设计的吊舱版本明显较差的机动性能。修改后的版本延长了中间的身体,只留下7.5%的船体,构成船尾部分。据推测,由于后肩和中体破冰量的增加,中段的加长造成了较大的转弯阻力力矩。在考虑冰壳相互作用几何和破冰基本力学以及现有轶事试验证据的基础上,数值验证了这一假设,以解释扩展中体设计所表现出的较差机动性。本文给出了船体几何形状和转弯紧密度对船舶操纵性能影响的仿真结果。总结了获得的重要见解,并提出了进一步工作的建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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