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APPLICATION OF CFD TO STUDY PERFORMANCE OF HYDROFOIL-BASED SHIP-STABILIZATION SYSTEMS

机译:CFD在研究基于水翼的船舶稳定系统性能中的应用

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摘要

Computational Fluid Dynamics is used for simulating the flow over an oscillating hydrofoil found in a typical active-fin ship stabilization system. The hydrofoils oscillate through large angles of attack well above the static stall angle to generate large lift forces. Lift forces are calculated on the hydrofoil by using a simple sinusoidal motion at mean frequency of fin oscillation. The lift data is used in a linear system model created to simulate the active-fin ship-stabilization system. A Proportional Integral Derivative (PID) control system has also been developed for the purpose of controlling the fin motion. The simulation provides the typical motion experienced by a hydrofoil used in a ship stabilization system. This motion is fed back to a CFD solver to understand the effect of non-sinusoidal oscillation on Lift, Drag and Moment of the hydrofoil. The aerodynamics of the non-sinusoidally oscillating hydrofoil is analyzed so as to find the effect of pitch rate of the hydrofoil on the lift forces and hence on the performance of the ship stabilizer.
机译:计算流体动力学用于模拟在典型的主动鳍式船舶稳定系统中发现的振荡水翼上的流动。水翼在远大于静态失速角的较大攻角内振荡,以产生较大的升力。通过在鳍片振动的平均频率下使用简单的正弦运动来计算水翼上的升力。升程数据用于创建的线性系统模型中,以模拟主动鳍式船舶稳定系统。为了控制鳍片运动,还开发了比例积分微分(PID)控制系统。该仿真提供了船舶稳定系统中使用的水翼经历的典型运动。该运动反馈到CFD求解器,以了解非正弦振动对水翼的升力,阻力和力矩的影响。分析非正弦振荡水翼的空气动力学特性,以发现水翼的俯仰率对升力的影响,从而对船舶稳定器的性能产生影响。

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