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Liner Optimization Studies Using the Ducted Fan Noise Prediction Code TBIEM3D

机译:使用风管风扇噪声预测代码TBIEM3D进行的衬里优化研究

摘要

In this paper we demonstrate the usefulness of the ducted fan noise prediction code TBIEM3D as a liner optimization design tool. Boundary conditions on the interior duct wall allow for hard walls or a locally reacting liner with axially segmented, circumferentially uniform impedance. Two liner optimization studies are considered in which farfield noise attenuation due to the presence of a liner is maximized by adjusting the liner impedance. In the first example, the dependence of optimal liner impedance on frequency and liner length is examined. Results show that both the optimal impedance and attenuation levels are significantly influenced by liner length and frequency. In the second example, TBIEM3D is used to compare radiated sound pressure levels between optimal and non-optimal liner cases at conditions designed to simulate take-off. It is shown that significant noise reduction is achieved for most of the sound field by selecting the optimal or near optimal liner impedance. Our results also indicate that there is relatively large region of the impedance plane over which optimal or near optimal liner behavior is attainable. This is an important conclusion for the designer since there are variations in liner characteristics due to manufacturing imprecisions.
机译:在本文中,我们演示了管道风扇噪声预测代码TBIEM3D作为衬板优化设计工具的有用性。内部导管壁上的边界条件允许使用硬壁或具有轴向分段,周向均匀阻抗的局部反应衬套。考虑了两项线性优化研究,其中通过调整线性阻抗最大化了由于线性存在而导致的远场噪声衰减。在第一个示例中,检查了最佳衬管阻抗对频率和衬管长度的依赖性。结果表明,最佳阻抗和衰减水平均受衬管长度和频率的显着影响。在第二个示例中,TBIEM3D用于在设计为模拟起飞的条件下比较最佳和非最佳班轮箱壳之间的辐射声压级。结果表明,通过选择最佳或接近最佳的衬管阻抗,可以在大多数声场中实现显着的降噪。我们的结果还表明,在阻抗平面上存在较大的区域,在该区域上可获得最佳或接近最佳的线性行为。对于设计者来说,这是一个重要的结论,因为由于制造的不精确性,衬里特性会有所不同。

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    Farassat F.; Dunn M. H.;

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  • 年度 1998
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