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Hydrodynamic simulation of an oscillating hydrofoil near free surface in critical unsteady parameter

机译:临界不稳定参数附近自由表面附近振荡水翼的流体动力学模拟

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摘要

In this research study, unsteady, viscous and turbulent fluid flow around a plunging hydrofoil is simulated near the water free surface for different submergence depths and osculation frequencies. The Navier-Stokes (N-S) equations are discretized by employing the finite volume method (FVM) and are solved by using the Pimple algorithm. The volume of fluid (VOF) technique is applied to capture the free surface. To validate the present simulations, a part of the results is compared with experimental results. The aim of the current study is to clarify the physics of flow in the critical unsteady parameter range. Furthermore, the effects of free surface and surface waves on hydrofoil drag are analyzed. Moreover, instantaneous drag behavior, the shape of the surface waves and the effect of the free surface on trailing edge vortices (TEV) are investigated at subcritical, supercritical and especially near critical Strouhal number. The results demonstrate that the main reason behind the sudden drag increment in the critical unsteady parameter is the generated powerful waves in this region which transfer more momentum and finally lead to drag increment. In addition, the free surface affects TEV and causes drag increment at all frequencies at the submergence depth of 0.5c and critical frequency of other depths. However, the free surface does not have any effects on the vortices in other cases.
机译:在本研究中,模拟了在无水表面附近,针对不同的浸没深度和振荡频率,围绕着水翼的不稳定,粘性和湍流的流动。 Navier-Stokes(N-S)方程采用有限体积方法(FVM)进行离散化,并使用Pimple算法求解。流体体积(VOF)技术用于捕获自由表面。为了验证当前的模拟,将部分结果与实验结果进行比较。当前研究的目的是阐明临界非稳态参数范围内的流动物理现象。此外,分析了自由表面和表面波对水翼阻力的影响。此外,研究了亚临界,超临界,特别是接近临界Strouhal数下的瞬时阻力行为,表面波的形状以及自由表面对后缘涡旋(TEV)的影响。结果表明,在关键非稳态参数中突然增加阻力的主要原因是在该区域中产生的强大波,该波传递更多的动量并最终导致阻力增加。此外,自由表面会影响TEV,并在0.5c的浸入深度和其他深度的临界频率下在所有频率下引起阻力增加。但是,在其他情况下,自由表面对旋涡没有任何影响。

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