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Viscous effects on transonic airfoil stability and response

机译:粘性对跨音速翼型稳定性和响应的影响

摘要

Viscous effects on transonic airfoil stability and response are investigated using an integral boundary layer model coupled to the inviscid XTRAN2L transonic small disturbance code. Unsteady transonic airloads required for stability analyses are computed using a pulse transfer function analysis including viscous effects. The pulse analysis provides unsteady aerodynamic forces for a wide range of reduced frequency in a single flow field computation. Nonlinear time marching aeroelastic solutions are presented which show the effects of viscosity on airfoil response behavior and flutter. Effects of amplitude on time marching responses are demonstrated. A state space aeroelastic model employing Pade approximants to describe the unsteady airloads is used to study the effects of viscosity on transonic airfoil stability. State space dynamic pressure root loci are in good overall agreement with time marching damping and frequency estimates. Parallel sets of results with and without viscous effects reveal the effects of viscosity on transonic unsteady airloads and aeroelastic characteristics of airfoils.
机译:使用与无粘性XTRAN2L跨音速小扰动码耦合的积分边界层模型,研究了对跨音速翼型稳定性和响应的粘性影响。使用包含粘性效应的脉冲传递函数分析来计算稳定性分析所需的非稳态跨音速空气载荷。脉冲分析可在单个流场计算中为各种降低的频率提供不稳定的空气动力。提出了非线性时间行进的气动弹性解决方案,该解决方案显示了粘度对翼型响应行为和颤振的影响。证明了幅度对时间行进响应的影响。使用帕德近似值描述不稳定空气载荷的状态空间气动弹性模型来研究粘度对跨音速翼型稳定性的影响。状态空间动压根轨迹与时间行进阻尼和频率估计具有良好的总体一致性。具有和不具有粘滞效应的平行结果集揭示了粘度对跨音速不稳定空气载荷和机翼气弹特性的影响。

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