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FLOW CHARACTERISTICS OF A HELICOPTER FUSELAGE CONFIGURATION INCLUDING A ROTATING ROTOR HEAD

机译:包括旋翼头在内的直升机机身配置的流动特性

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The reduction of emissions in air transport is clearly a main goal of the aeronautical industry today, addressing both fixed wing aircraft and rotorcraft. The first phase of the ADHeRo (Aerodynamic Design Optimization of a Helicopter Fuselage including a Rotating Rotor Head) project contributed to achieving this goal by providing detailed flow characteristics and drag analysis of a state-of-the-art Twin Engine Light class utility helicopter. This was achieved by means of wind tunnel experiments and numerical simulations. It has been shown that optimizing the parasite drag of such a configuration is a vital approach for achieving efficiency gains. In particular, this can be obtained by reducing the drag of the rotor head, the landing skids and the fuselage. The analysis revealed that reducing the interference drag of the landing skids on the fuselage also provides significant potential for efficiency gains. On the other hand, the analysis showed the importance of considering changes in the lift characteristics when optimizing components. Otherwise, efficiency gains could be lost due to higher power requirements for the main rotor.
机译:减少航空运输中的排放显然是当今航空工业的主要目标,涉及固定翼飞机和旋翼飞机。 ADHeRo(包括旋转旋翼头的直升机机身的气动设计优化)项目的第一阶段通过提供最新型双引擎轻型通用直升机的详细流量特性和阻力分析,为实现这一目标做出了贡献。这是通过风洞实验和数值模拟来实现的。已经表明,优化这种配置的寄生阻力是实现效率提高的重要方法。特别地,这可以通过减小转子头,着陆滑道和机身的阻力来获得。分析表明,减少着陆滑道对机身的干扰阻力也为提高效率提供了巨大潜力。另一方面,分析表明在优化组件时考虑升程特性变化的重要性。否则,由于主旋翼的更高功率要求,效率增益可能会损失。

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