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首页> 外文期刊>AIAA Journal >Reduced-Order Nonlinear Unsteady Aerodynamic Modeling Using a Surrogate-Based Recurrence Framework
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Reduced-Order Nonlinear Unsteady Aerodynamic Modeling Using a Surrogate-Based Recurrence Framework

机译:使用基于代理的递归框架进行降阶非线性非定常空气动力学建模

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摘要

A reduced-order nonlinear unsteady aerodynamic modeling approach suitable for analyzing pitching/plunging airfoils subject to fixed or time-varying freestream Mach numbers is described. The reduced-order model uses kriging surrogates to account for flow nonlinearities and recurrence solutions to account for time-history effects associated with unsteadiness. The resulting surrogate-based recurrence framework generates time-domain predictions of unsteady lift, moment, and drag that accurately approximate computational fluid dynamics solutions, but at a fraction of the computational cost. Results corresponding to transonic conditions demonstrate that the surrogate-based recurrence framework can mimic computational fluid dynamics predictions of unsteady aerodynamic responses when flow nonlinearities are present. For an unsteady aerodynamic modeling problem considered in this study, an accurate reduced-order model was generated by the surrogate-based recurrence framework approach with significantly fewer computational fluid dynamics evaluations compared to results reported in the literature for a similar problem in which a proper-orthogonal-decomposition-based approach was applied. Furthermore, the results show that the surrogate-based approach can accurately model time-varying freestream Mach number effects and is therefore applicable to rotary-wing applications in addition to fixed-wing applications.
机译:描述了一种适用于分析受到固定或随时间变化的自由流马赫数的俯仰/俯冲翼型的降阶非线性非定常空气动力学建模方法。降阶模型使用克里金代理代替来解决流动非线性问题,并使用递归解决方案来解决与不稳定相关的时间历史效应。由此产生的基于替代的递归框架生成了非稳态升力,力矩和阻力的时域预测,可以准确地近似计算流体动力学解决方案,但所需的计算成本却很小。对应于跨音速条件的结果表明,当存在流动非线性时,基于替代物的递归框架可以模拟非定常气动响应的计算流体动力学预测。对于本研究中考虑的非定常的空气动力学建模问题,通过基于替代的递归框架方法生成了精确的降阶模型,与文献中针对类似问题的结果相比,计算流体动力学评估结果明显少得多,其中类似问题应用了基于正交分解的方法。此外,结果表明,基于代理的方法可以准确地模拟随时间变化的自由流马赫数效应,因此除固定翼应用外,还适用于旋翼应用。

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