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Aeroacoustic response of an array of tubes with and without bias-flow

机译:具有和无偏压的管道阵列的气动声反应

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Heat exchangers, consisting of tube arrays in a cross-flow are a vital component of power generation systems. They are of interest from an acoustic point of view, because they can reflect, transmit and absorb an incident sound wave; in other words, they have the potential to act as a sound absorber and even as a passive control device to prevent a thermoacoustic instability in the power generation system. This paper presents a fundamental study of the aeroacoustic response of a tube array with and without bias-flow (also called cross-flow). The study has a theoretical and experimental side. On the theoretical side, a new model, based on the assumption of quasi-steady flow, was developed to predict the acoustic reflection and transmission coefficient of a tube array with bias-flow. Also, the model by Huang and Heckl (Huang and Heckl, 1993, Acustica 78, 191–200) for the case without bias-flow was evaluated. On the experimental side, flow-duct experiments using a multi-microphone technique were performed to validate the predictions from both models. The agreement was found to be very good for low frequencies. The measurements revealed the limit of validity of the quasi-steady model in terms of the Strouhal number. Although this limit is quite low, our quasi-steady model can serve as a valuable tool for designers of heat exchangers.
机译:由横流的管阵列组成的热交换器是发电系统的重要组成部分。它们感兴趣的是声学的角度,因为它们可以反射,传递和吸收入射声波;换句话说,它们具有充当声音吸收器的潜力,甚至作为被动控制装置,以防止发电系统中的热声不稳定。本文提出了一种带有偏差流动的管阵列的气动回应的基本研究(也称为交叉流量)。该研究具有理论和实验侧。在理论方面,基于准稳定流的假设,开发了一种新模型,以预测具有偏压的管阵列的声反射和传动系统。此外,评估了黄色和Heckl(Huang和Heckl,1993,Acustara 78,191-200)的模型,没有偏见流动。在实验侧,进行使用多麦克风技术的流量 - 管道实验以验证两种模型的预测。该协议被发现对低频来说非常好。测量揭示了在斯特鲁姆数量方面的准稳态模型的有效性极限。虽然这个限制很低,但我们的准稳态模型可以作为热交换器设计人员的宝贵工具。

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