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Aeroacoustics of pipe systems with closed branches

机译:封闭分支的管道系统的航空声学

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Flow induced pulsations in resonant pipe networks with closed branches are considered in this review paper. These pulsations, observed in many technical applications, have been identified as self-sustained aeroacoustic oscillations driven by the instability of the flow along the closed branches. The fundamental aspects of the flow induced pulsations are discussed, with particular attention to the description of the sound sources. A single mode model for the prediction of the self-sustained oscillations is presented, the "energy balance". This model consists of the evaluation of the amplitude of each acoustic mode of the system by means of a balance between the acoustic source power and the acoustic power losses. The main components of this prediction method are discussed; these are the evaluation of the acoustic behavior of a pipe network and the modeling of the sound sources and the acoustic losses. Several field and scale model examples of pipe systems displaying self-sustained oscillations are presented, in order to discuss the parameters influencing the aeroacoustic behavior of pipe networks. Finally some counter-measures for the prevention of self-sustained oscillations are reviewed and perspectives for future work are considered.
机译:在这篇评论论文中考虑了在具有闭合分支的谐振管网中的流动引起的脉动。在许多技术应用中观察到的这些脉动已被识别为由沿闭合分支流动的不稳定性驱动的自持式气声振荡。讨论了流动引起的脉动的基本方面,并特别注意了声源的描述。提出了一种用于预测自持振荡的单模模型,即“能量平衡”。该模型包括通过声源功率与声功率损耗之间的平衡来评估系统每种声模式的幅度。讨论了这种预测方法的主要组成部分。这些是对管网声学性能的评估,以及声源和声学损耗的建模。为了讨论影响管网气动性能的参数,给出了几个显示自持振荡的管道系统的现场和比例模型实例。最后,回顾了一些防止自持振荡的对策,并考虑了今后的工作前景。

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