A Technique For Lock-In Prediction On A Fluid Structure Interaction Of Naca 0012 Foil With High Re

N. Arini, S. Turnock, M. Tan
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引用次数: 3

Abstract

A numerical lock-in prediction technique of a NACA 0012 hydrofoil, immersed in a flow having a Re of 3.07x106 is proposed in this paper. The technique observes the foil’s response as part of a fluid-structure interaction analysis. The response is modelled by foil’s vibration which is represented by spring and damper components. The technique identifies and predicts the foil’s lock-in when it vibrates. The prediction is examined using the Phase Averaged Method which employs the Hilbert Transform Method. The aim of this paper is to propose a numerical way to identify a lock-in condition experienced by a NACA 0012 foil in a high Reynolds number flow. The foil’s mechanical properties are selected and its motions are restricted in two modes which are in the pitch and heave directions. The rotational and transverse lock-in modes are identified in the model. The existence of lock-in is verified using pressure distribution plot, the history of trailing edge displacement and fluid regime capture. The history of total force coefficients is also shown to justify the result. The result shows that the technique can predict reliably the lock-in condition on the foil’s interaction. Three main fluid induced vibration frequencies are generated in the interaction. None of them are close to natural frequency of the foil and lock-in is apparently not found in the typical operational condition.
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高Re Naca 0012箔流固相互作用的锁相预测技术
本文提出了一种NACA 0012型水翼在Re为3.07 × 106的湍流中的数值锁定预报方法。该技术观察箔片的响应作为流固耦合分析的一部分。该响应是用箔片的振动来模拟的,箔片的振动由弹簧和阻尼器组成。该技术可以识别并预测箔片在振动时的锁定状态。采用采用希尔伯特变换的相位平均法对预测结果进行检验。本文的目的是提出一种数值方法来识别NACA 0012箔在高雷诺数流动中所经历的锁定状态。选择了金属箔的力学性能,并将其运动限制在俯仰和升沉两种模式下。在模型中确定了旋转锁模和横向锁模。利用压力分布图、尾缘位移历史和流体状态捕获验证了锁相的存在。总力系数的变化历史也证明了结果的正确性。结果表明,该方法可以可靠地预测箔片相互作用下的锁相状态。在相互作用中产生了三种主要的流体诱发振动频率。它们都不接近箔的固有频率,锁定显然没有发现在典型的操作条件。
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