PRESSURE DISTRIBUTION DUE TO STERN TAB DEFLECTION AT MODEL SCALE

IF 0.7 4区 工程技术 Q4 ENGINEERING, MARINE International Journal of Maritime Engineering Pub Date : 2021-12-13 DOI:10.3940/rina.ijme.2015.a1.303
T. Arnold, J. Lavroff, Davis
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引用次数: 1

Abstract

Trim tabs form an important part of motion control systems on high-speed watercraft. By altering the pitch angle, significant improvements in propulsion efficiency can be achieved by reducing overall resistance. For a ship in heavy seas, trim tabs can also be used to reduce structural loads by changing the vessel orientation in response to encountered waves. In this study, trials have been conducted in the University of Tasmania hydraulics laboratory using a closed- circuit water tunnel to measure model scale trim tab forces. The model scale system replicates the stern tabs on the full- scale INCAT Tasmania 112 m high-speed wave-piercer catamaran. The model was designed for total lift force measurement and pressure tappings allowed for pressures to be measured at fixed locations on the underside of the hull and tab. This investigation examines the pressures at various flow velocities and tab deflection angles for the case of horizontal vessel trim. A simplified two-dimensional CFD model of the hull and tab has also been analysed using ANSYS CFX software. The results of model tests and CFD indicate that the maximum pressure occurs in the vicinity of the tab hinge and that the pressure distribution is long-tailed in the direction forward of the hinge. This accounts for the location of the resultant lift force, which is found to act forward of the tab hinge.
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模型尺度下尾板偏转引起的压力分布
调整片是高速船舶运动控制系统的重要组成部分。通过改变俯仰角,可以通过降低整体阻力来显著提高推进效率。对于在波涛汹涌的海面上的船舶,通过改变船舶方向以应对遇到的波浪,也可以使用纵倾调整片来减少结构载荷。在这项研究中,试验已经在塔斯马尼亚大学水力学实验室进行,使用闭路水隧道来测量模型规模的配平翼片力。该模型系统复制了全尺寸INCAT塔斯马尼亚112米高速穿浪双体船的船尾翼片。该模型是为总升力测量和测压而设计的,允许在船体和翼片下侧的固定位置测量压力。本研究检查了水平船舶纵倾情况下不同流速和翼片偏转角下的压力。还使用ANSYS CFX软件分析了船体和翼片的简化二维CFD模型。模型试验和CFD结果表明,最大压力出现在翼片铰链附近,压力分布在铰链前方方向呈长尾分布。这说明了合力的位置,发现合力作用在翼片铰链的前方。
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来源期刊
CiteScore
1.20
自引率
0.00%
发文量
18
审稿时长
>12 weeks
期刊介绍: The International Journal of Maritime Engineering (IJME) provides a forum for the reporting and discussion on technical and scientific issues associated with the design and construction of commercial marine vessels . Contributions in the form of papers and notes, together with discussion on published papers are welcomed.
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