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A comparison of helicopter recovery maneuvers on frigates by means of PIV measurements

机译:通过PIV测量对Helicopter Reporty Sereuvers比较PIV测量

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Helicopter pilots who have to operate on frigates must deal with turbulent and unsteady flows caused by the incidence of the wind on the non-aerodynamic surfaces of the frigate. In addition, the flight deck is usually placed at the stern, right behind the frigate superstructure where recirculation and low-velocity regions appear. For that reason, studying how the aerodynamic effects influence the helicopter rotor during the approach and landing on the frigate could be essential to guarantee safe operations. The aim of this paper is to present PIV velocity maps with the flow patterns generated by the interaction between the frigate wake and the helicopter rotor working during its landing approach usually named as dynamic-interface. Three different landing maneuvers have been analyzed: rear, diagonal and aft-fore. The jet generated by the rotor will be used to obtain induced velocity profiles under the rotor. With these velocity profiles, rotor asymmetries during its working over the frigate are detected. With all data at each point of the maneuvers, a final comparison will be made to select the best procedure for helicopter recovery on frigates under different wind over deck conditions.
机译:必须对支泄操作的直升机飞行员必须处理由风格的非空气动力学表面上的风发生引起的湍流和不稳定的流动。此外,飞行甲板通常被放置在船尾,右后面的护卫舰上部结构,其中恢复和低速区域出现。因此,研究空气动力学效应如何影响直升机转子在接近和降落在护卫舰上可能是必不可少的,以保证安全操作。本文的目的是呈现PIV速度映射与由护卫舰尾部之间的相互作用产生的流动模式,并在其着陆方法期间工作通常被命名为动态接口。已经分析了三种不同的着陆机动:后部,对角线和止前。由转子产生的喷射将用于在转子下获得诱导的速度轮廓。通过这些速度曲线,检测到在其上工作过程中的转子不对称。通过在机动的每个点处的所有数据,将进行最终比较,以选择在不同风中的甲板条件下的钢筋下的高架恢复的最佳过程。

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