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Experimental research on resistance and motion attitude variation of ship-wave-ice interaction in marginal ice zones

机译:边缘冰区船海冰相互作用的阻力和运动姿态变化的实验研究

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摘要

Wave ice floe interactions increasingly threaten the safety of ice-going ships with the expansion of the marginal ice zone (MIZ). Therefore, studies must focus on the resistance of ice-going ships in the MIZ. Model testing is a feasible and practical method for conducting such research. In this study, the Harbin Engineering University's towing tank equipped with a wave generator was used to simulate the special environment of the MIZ by using paraffin as model ice. A ship model resistance test is conducted under the combined effects of waves and ice floes. The study results show that the motion of the ship model is more unstable in the MIZ than in ice floes. Furthermore, the degree of the ship ice interaction increases under the wave ice interaction. The test results show that the total ship resistance is not equal to the sum of the open-water resistance, wave-added resistance, and ice floe resistance because of the wave ice floe ship interaction. The increase in resistance resulting from the combination of these three components must be considered while designing an ice-going ship. Finally, we discussed the influence of the parameters associated with the wave length, wave height, and ice concentration on the added coupling resistance.
机译:随着边缘冰区(MIZ)的扩展,波浪浮冰的相互作用日益威胁着制冰船的安全。因此,研究必须集中在MIZ中的航行冰船的阻力上。模型测试是进行此类研究的一种可行且实用的方法。在这项研究中,哈尔滨工程大学的拖船装有波发生器,通过使用石蜡作为模型冰来模拟MIZ的特殊环境。在波浪和浮冰的共同作用下进行了船模阻力测试。研究结果表明,MIZ船模型的运动比浮冰模型的运动更不稳定。此外,在波浪冰相互作用下,船冰相互作用的程度增加。试验结果表明,由于波浪浮冰船的相互作用,总的船舶阻力不等于开放水阻力,波浪附加阻力和浮冰阻力之和。在设计冰船时,必须考虑到这三个组件的组合所导致的阻力增加。最后,我们讨论了与波长,波高和冰浓度相关的参数对附加耦合电阻的影响。

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