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首页> 外文期刊>Journal of aerospace engineering >Aerodynamic Reduced-Order Model of Shape-Change Blade Subjected to Upstream Wake
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Aerodynamic Reduced-Order Model of Shape-Change Blade Subjected to Upstream Wake

机译:对上游唤醒进行的形状变化刀片的空气动力学减少模型

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摘要

Abstract This paper presents a Volterra series reduced-order model method to evaluate aerodynamic forces of aircraft engine blade designs, whose shape changes during design and are always excited by upstream wakes. The method uses a superposition of the steady and dynamic Volterra series to reach this aim. The steady series represents the influence of the blade shape changes on the blade aerodynamic forces. The dynamic series represents the impact of the unsteady upstream wakes on the blade aerodynamic forces. A T106LPT blade is used as an example to discuss the proposed method. The accuracy of the ROM method is analyzed by the example at the wake excitation condition with or without shape-change. The example shows that the ROM method can predict the wake induced pressure variation of a shape-change blade without repeated computational fluid dynamics (CFD) analyses.
机译:摘要本文介绍了Volterra系列下降阶模型方法,以评估飞机发动机刀片设计的空气动力,其形状在设计期间变化,并且总是通过上游唤醒兴奋。该方法采用稳定动态的Volterra系列叠加,达到这种目标。稳态系列表示叶片形状变化对叶片空气动力的影响。动态系列代表不稳定上游唤醒在叶片空气动力上的影响。使用T106LPT刀片作为讨论所提出的方法的示例。通过在唤醒激励条件下的示例分析ROM方法的准确性,或者没有形状变化。该示例示出了ROM方法可以预测不具有重复计算流体动力学(CFD)分析的形状变化刀片的唤醒感应压力变化。

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