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首页> 外文期刊>Journal of Fluids and Structures >Quantitative evaluation of flow-induced structural vibration and noise in turbomachinery by full-scale weakly coupled simulation
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Quantitative evaluation of flow-induced structural vibration and noise in turbomachinery by full-scale weakly coupled simulation

机译:全面弱耦合模拟定量评估涡轮机械中流动引起的结构振动和噪声

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This article reports on a full-scale structural simulation of flow-induced mechanical vibrations and noise in a 5-stage centrifugal pump. An interior flow field is simulated by an LES-based CFD program, which can be found elsewhere. We developed a data-interface tool to enable mesh matching and data transfer between the fluid and structure meshes. The vibration of the pump's structure was simulated using a parallel explicit dynamic FEM code. This provided a time series of pressure fluctuations on the internal surface as force-boundary conditions. The calculated vibration of the outer surface of the structure agrees reasonably well with measured data. Using Fourier transformation, the vibration modes at blade passing frequencies (BPFs) were extracted and presented as a visual image. The simulation clarified the mechanisms of resonant noise generation and propagation, which can then be used for noise reduction. This study shows that it is feasible to use fluid-structure weakly coupled simulations to estimate the flow-induced noise generated in turbomachinery.
机译:本文报道了5级离心泵中流动引起的机械振动和噪声的完整结构模拟。内部流场是通过基于LES的CFD程序模拟的,该程序可在其他地方找到。我们开发了一种数据接口工具,以实现网格匹配以及流体和结构网格之间的数据传输。使用并行的显式动态FEM代码模拟了泵结构的振动。这提供了作为力边界条件的内表面压力波动的时间序列。结构外表面的计算振动与测量数据相当吻合。使用傅立叶变换,提取叶片通过频率(BPF)的振动模式并将其显示为可视图像。仿真阐明了共振噪声产生和传播的机制,然后可以将其用于降噪。这项研究表明,使用流体结构弱耦合模拟来估计涡轮机械中产生的流动引起的噪声是可行的。

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