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Modeling the Aerodynamic Interaction of Multiple Rotor Vehicles and Compound Rotorcraft with Viscous Vortex Particle Method

机译:用粘性涡旋颗粒法建立多转轮和复合旋翼飞机的空气动力学相互作用

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This paper presents an efficient and high fidelity aerodynamic interaction modeling method for effective simulation and analysis of compound rotorcraft as well as aircraft configured with multiple rotors. The methodology is the first-principle based viscous Vortex Particle Method (VPM) whose rotor wake modeling accuracy has been validated through extensive simulation. This research extends the modeling methodology to address modern multiple rotor systems and compound rotorcraft and emphasizes the mutual interaction between the rotors, wings, fuselage, and aerodynamic surfaces of a full rotorcraft. The developed methodology aims to provide an effective modeling tool to support the design and analysis of next generation vertical lift vehicles. In this paper, the mutual aerodynamic interaction between major components of modern rotorcraft configurations (such as the rotor/rotor, the rotor/wing, the rotor/propeller, the rotor/empennage, and interactions) and its impact on the vehicle performance is studied. The simulation results are compared with available measurements and a good correlation with the measurements is obtained for the representative cases evaluated.
机译:本文介绍了一种有效且高保真的空气动力学相互作用建模方法,用于复合旋翼飞行器的有效仿真和分析,以及多个转子配置的飞机。方法是通过广泛的模拟验证了其转子唤醒建模精度的第一原理基粘性涡旋颗粒方法(VPM)。该研究扩展了建模方法来解决现代多转子系统和复合旋翼机,并强调转子,翅膀,机身和全旋翼飞行器的空气动力学之间的相互相互作用。开发方法旨在提供有效的建模工具,以支持下一代垂直提升车辆的设计和分析。在本文中,研究了现代旋翼配置的主要部件之间的相互空气动力学相互作用(例如转子/转子,转子/翼,转子/螺旋桨,转子/ empennage和相互作用)及其对车辆性能的影响。将仿真结果与可用测量进行比较,并且获得了评估的代表性情况的良好相关性。

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