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Performance of a hydrofoil operating close to a free surface over a range of angles of attack

机译:在一系列攻击角度上靠近自由表面的水膜的性能

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Performance of a NACA 634-021 hydrofoil in motion under and in close proximity of a free surface for a large range of angles of attack is studied. Lift and drag coefficients of the hydrofoil at different submergence depths are investigated both numerically and experimentally, for 0°?≤?AoA≤30° at a Reynolds number of 105. The results of the numerical study are in good agreement with the experimental results. The agreement confirms the new finding that for a submerged hydrofoil operating at high angles of attack close to a free surface, the interaction between the hydrofoil-motion induced waves on the free surface and the hydrofoil results in mitigation of the flow separation characteristics on the suction side of the foil and delay in stall, and improvement in hydrofoil performance. In comparing with a baseline case, results suggest a 55% increase in maximum lift coefficient and 90% average improvement in performance for, based on the lift-to-drag ratio, but it is also observed significant decrease of lift-to-drag ratio at lower angles of attack. Flow details obtained from combined finite volume and volume of fluid numerical methods provide insight into the underlying enhancement mechanism, involving interaction between the hydrofoil and the free surface.
机译:研究了NACA 634-021水膜的运动,下面的运动靠近自由表面的自由表面。在数值和实验上,在雷诺数为105的雷诺数,在数值和实验上对不同潜水深度的水膜的升降系数进行了0°Δ≤30°。数值研究的结果与实验结果很好。该协议证实了新发现,对于在接近自由表面的高角度下操作的浸没式水膜,水翼膜 - 运动引起的自由表面上的相互作用和水膜之间的相互作用导致抽吸物流分离特性的减轻箔片的一侧和延迟停滞,改善水翼性的性能。在与基线案例相比,结果表明,基于提升比率,最大提升系数的最大提升系数和90%的平均性能提高了55%,但也观察到升力比率显着降低在较低的攻击角度。从组合的有限体积和流体数值方法获得的流动细节提供了进入潜在的增强机制的洞察力,涉及水翼块与自由表面之间的相互作用。

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