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Numerical investigation on vibration and noise induced by unsteady flow in an axial-flow pump

机译:轴流泵中非定常流动引起的振动和噪声的数值研究

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Full-scale structural vibration and noise induced by flow in an axial-flow pump was simulated by a hybrid numerical method. An unsteady flow field was solved by a large eddy simulation-based computational fluid dynamics commercial code, Fluent. An experimental validation on pressure fluctuations was performed to impose an appropriate vibration exciting source. The consistency between the computed results and experimental tests were interesting. The modes of the axial-flow pump were computed by the finite element method. After that, the pump vibration and sound field were solved using a coupled vibro-acoustic model. The numerical results indicated that the the blade-passing frequency was the dominant frequency of the vibration acceleration of the pump. This result was consistent with frequency spectral characteristics of unsteady pressure fluctuation. Finally, comparisons of the vibration acceleration between the computed results and the experimental test were conducted. These comparisons validated the computed results. This study shows that using the hybrid numerical method to evaluate the flow-induced vibration and noise generated in an axial-flow pump is feasible.
机译:利用混合数值方法模拟了轴流泵中的流动引起的全尺寸结构振动和噪声。通过基于大型涡流仿真的计算流体力学商业代码Fluent解决了不稳定的流场问题。对压力波动进行了实验验证,以施加适当的振动激励源。计算结果与实验测试之间的一致性很有趣。轴流泵的模式是通过有限元方法计算的。此后,使用耦合振动声学模型求解泵的振动和声场。数值结果表明,叶片通过频率是泵振动加速度的主要频率。该结果与非稳态压力波动的频谱特性一致。最后,比较了计算结果和实验测试中的振动加速度。这些比较验证了计算结果。这项研究表明,使用混合数值方法评估轴流泵中的流致振动和噪声是可行的。

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