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首页> 外文期刊>Journal of Sound and Vibration >On modeling the sound propagation through a lined duct with a modified Ingard-Myers boundary condition
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On modeling the sound propagation through a lined duct with a modified Ingard-Myers boundary condition

机译:通过用改进的Incard-Myers边界条件建模通过衬里管道的声音传播

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A duct acoustics model is an essential component of an impedance eduction technique and its computation cost determines the impedance measurement efficiency. In this paper, a model is developed for the sound propagation through a lined duct carrying a uniform mean flow. In contrast to many existing models, the interface between the liner and the duct field is defined with a modified Ingard-Myers boundary condition that takes account of the effect of the boundary layer above the liner. A mode-matching method is used to couple the unlined and lined duct segments for the model development. For the lined duct segment, the eigenvalue problem resulted from the modified boundary condition is solved by an integration scheme which, on the one hand, allows the lined duct modes to be computed in an efficient manner, and on the other hand, orders the modes automatically. The duct acoustics model developed from the solved lined duct modes is shown to converge more rapidly than the one developed from the rigid-walled duct modes. Validation against the experiment data in the literature shows that the proposed model is able to predict more accurately the liner performance measured by the two-source method. This, however, cannot be made by a duct acoustics model associated with the conventional Ingard-Myers boundary condition. The proposed model has the potential to be integrated into an impedance eduction technique for more reliable liner measurement. (C) 2018 Elsevier Ltd. All rights reserved.
机译:管道声学模型是阻抗信息技术的基本组件,其计算成本决定了阻抗测量效率。在本文中,开发了一种模型,用于通过承载均匀平均流动的衬里管道进行声音传播。与许多现有模型相比,衬垫和管道场之间的界面是用修改的Incard-Myers边界条件定义,该边界条件考虑了衬里上方的边界层的效果。模式匹配方法用于将无衬里和衬里的管道段耦合以进行模型开发。对于衬里的管道段,由修改边界条件产生的特征值问题通过一方面允许以有效的方式计算衬里的管道模式,另一方面允许衬里的管道模式进行序列自动地。从溶解的衬里管道模式开发的管道声学模型显示出比从刚性壁式管道模式开发的更快地收敛。对文献中的实验数据验证表明,所提出的模型能够更准确地预测通过双源法测量的衬里性能。然而,这不能通过与传统的Incard-Myers边界条件相关的管道声学模型来制造。所提出的模型有可能集成到阻抗的监控技术中,以进行更可靠的衬里测量。 (c)2018年elestvier有限公司保留所有权利。

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