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Current status of computational methods for transonic unsteady aerodynamics and aeroelastic applications

机译:跨音速非定常空气动力学和气动弹性应用计算方法的现状

摘要

The current status of computational methods for unsteady aerodynamics and aeroelasticity is reviewed. The key features of challenging aeroelastic applications are discussed in terms of the flowfield state: low-angle high speed flows and high-angle vortex-dominated flows. The critical role played by viscous effects in determining aeroelastic stability for conditions of incipient flow separation is stressed. The need for a variety of flow modeling tools, from linear formulations to implementations of the Navier-Stokes equations, is emphasized. Estimates of computer run times for flutter calculations using several computational methods are given. Applications of these methods for unsteady aerodynamic and transonic flutter calculations for airfoils, wings, and configurations are summarized. Finally, recommendations are made concerning future research directions.
机译:综述了非定常空气动力学和空气弹性计算方法的现状。从流场状态的角度讨论了具有挑战性的气动弹性应用的关键特征:低角度高速流和高角度涡流为主的流。强调了粘性效应在确定初始流动分离条件下的气动弹性稳定性中的关键作用。从线性公式到Navier-Stokes方程的实现,都需要各种流动建模工具。给出了使用几种计算方法进行颤振计算的计算机运行时间的估计值。总结了这些方法在机翼,机翼和构型的非稳态气动和跨音速颤振计算中的应用。最后,就未来的研究方向提出了建议。

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