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首页> 外文期刊>Journal of Sound and Vibration >On the use of a uniformly valid analytical cascade response function for fan broadband noise predictions
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On the use of a uniformly valid analytical cascade response function for fan broadband noise predictions

机译:关于使用统一有效的分析级联响应函数进行风扇宽带噪声预测

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摘要

The present paper extends an existing analytical model of the aeroacoustic response of a rectilinear cascade of flat-plate blades to three-dimensional incident vortical gusts, to the prediction of the noise generated by a three-dimensional annular blade-row. The extended formulation is meant to be implemented in a fan broadband noise prediction tool. The intended applications include the modern turbofan engines, for which analytical modelling is believed to be a good alternative to more expensive numerical techniques. The prediction noise model resorts to a strip theory approach based on a three-dimensional rectilinear cascade model. The latter is based on the Wiener-Hopf technique, and yields the pressure field in the blade passage and the unsteady blade loading. The analytical pressure solution is derived by making an extensive use of the residue theorem. The obtained unsteady blade loading distribution over the blades is then used as a dipole source distribution in an acoustic analogy applied in the annular rigid duct with uniform mean flow. The new achievements are then tested on threedimensional annular-benchmark configurations and compared with three-dimensional lifting-surface models and three-dimensional Euler linearized codes available in the literature. The accuracy of the model is shown for high hub-to-tip ratio cases. When used as such in a true rectilinear-cascade configuration, it also reproduces the exact radiated field that can be derived directly. For low hub-to-tip ratio configurations, the model departs from three-dimensional computations, both regarding the blade loading and the acoustic radiation. A correction is proposed to account for the actual annular dispersion relation in the rectilinear-cascade response function. The results suggest that the proposed correction is necessary to get closer to the underlying physics of the annular-space wave equation, but that it is yet not sufficient to fully reproduce three-dimensional results.
机译:本文扩展了平板叶片直线级联对三维入射涡流的气动响应的现有分析模型,以预测三维环形叶片行产生的噪声。扩展的公式旨在在风扇宽带噪声预测工具中实现。预期的应用包括现代涡轮风扇发动机,据信,对于这些模型而言,分析模型可以替代更昂贵的数值技术。预测噪声模型诉诸于基于三维直线级联模型的条带理论方法。后者基于Wiener-Hopf技术,并产生叶片通道中的压力场和不稳定的叶片载荷。通过广泛使用残差定理得出分析压力解。然后,将获得的叶片上的非稳态叶片载荷分布用作以均匀平均流量应用于环形刚性管道的声学模拟中的偶极子源分布。然后将新成果在三维环形基准配置上进行测试,并与文献中提供的三维提升表面模型和三维Euler线性化代码进行比较。对于高轮毂到齿顶比的情况,显示了模型的准确性。当在真正的直线级联配置中使用时,它还会重现可以直接导出的精确辐射场。对于低轮毂到齿尖比的配置,该模型偏离了有关叶片载荷和声辐射的三维计算。提出了一种校正,以考虑直线级联响应函数中的实际环形色散关系。结果表明,所提出的校正对于接近环形空间波动方程的基础物理学是必要的,但仍不足以完全再现三维结果。

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