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首页> 外文期刊>Journal of turbomachinery >Prediction of the Acoustic Reflection in a Realistic Aeroengine Intake With Three Numerical Methods to Analyze Fan Flutter
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Prediction of the Acoustic Reflection in a Realistic Aeroengine Intake With Three Numerical Methods to Analyze Fan Flutter

机译:用三种数值方法预测逼真的航空发动机摄入量分析风扇颤动的三个数值

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摘要

For a particular range of frequencies, an acoustic coupling between the fan and the air intake can modify fan stability regarding flutter. Previous works have shown that characterizing the reflection on the intake opening might be a crucial element to target operating points for which the risk of acoustic-driven flutter is high. To do so, three methodologies are compared in this article: an aeroelastic computational fluid dynamics (CFD) simulation, an acoustic potential simulation, and an analytical model. Each of them has a different fidelity level and computational cost, what makes their usage more beneficial at some step in the design process. It is shown that results of aeroelastic CFD and acoustic potential simulations are in excellent agreement. Fast acoustic simulations are then a good option in the early design process. The analytical model presents an important error mainly on the phase and should be adapted before usage.
机译:对于特定的频率范围,风扇和进气之间的声学耦合可以改变关于颤振的风扇稳定性。 以前的作用表明,表征在进气件上的反射可能是针对目标工作点的关键元件,其声驱动颤动的风险高。 为此,在本文中比较了三种方法:空气弹性计算流体动力学(CFD)仿真,声电位模拟和分析模型。 每个人都有不同的保真度和计算成本,是什么让他们的使用在设计过程中的一些步骤中更有益。 结果表明,空气弹性CFD和声学潜在模拟的结果具有很好的一致性。 然后,快速声学模拟在早期设计过程中是一个很好的选择。 分析模型主要呈现在阶段上的重要误差,并且应该在使用前进行调整。

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