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首页> 外文期刊>Fluid Dynamics >Control of the Aerodynamic Characteristics of a Profile Oscillating with Respect to the Incidence Angle in Subsonic Viscous Flow
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Control of the Aerodynamic Characteristics of a Profile Oscillating with Respect to the Incidence Angle in Subsonic Viscous Flow

机译:亚音速粘性流中入射角相对振荡的空气动力学特性的控制

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摘要

The results of a numerical simulation of the unsteady subsonic viscous gas flow around a two-dimensional profile oscillating with respect to the incidence angle are presented and the possibility of controlling the nonstationary aerodynamic characteristics is considered. The hysteresis phenomena typical of oscillatory profile motions are investigated, the dependence of the lift force and drag is found for various laws of periodic variation of the incidence angle with time, and the effect of the frequency and amplitude of the angular profile oscillations on the shape of the hysteresis curves is studied. The calculations were based on the numerical solution of the nonstationary Navier-Stokes equations averaged in the Reynolds sense (Reynolds equations) which were closed using the k-ω turbulence model with modeling of the laminar/turbulent transition.
机译:给出了二维二维轮廓围绕入射角振荡的非稳态亚音速粘性气体流动的数值模拟结果,并考虑了控制非稳态气动特性的可能性。研究了典型的振荡轮廓运动的磁滞现象,发现了升力和阻力对入射角随时间周期性变化的各种规律的影响,以及角轮廓振荡的频率和幅度对形状的影响研究了磁滞曲线。该计算基于在雷诺意义上平均的非平稳Navier-Stokes方程(雷诺方程)的数值解,该方程使用k-ω湍流模型和层流/湍流过渡模型进行了封闭。

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