Applied thermal engineering2022,Vol.2068.DOI:10.1016/j.applthermaleng.2022.118084

Determination of the heat conduction transfer function within the thermoacoustic instability limit cycle in a Rijke tube

Liu T. Li J. Zhu S. Yang L.
Applied thermal engineering2022,Vol.2068.DOI:10.1016/j.applthermaleng.2022.118084

Determination of the heat conduction transfer function within the thermoacoustic instability limit cycle in a Rijke tube

Liu T. 1Li J. 1Zhu S. 1Yang L.1
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作者信息

  • 1. School of Astronautics Beihang University
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Abstract

In this work, experimental measurements of the heat conduction transfer function (HCTF) within the limit cycle of thermoacoustic instabilities were conducted associated with a feedback controller. The responses of the heat conduction from the heater to the air in the vicinity to the oncoming flow disturbance can be described as the HCTF. When self-excited thermoacoustic instability occurs, it is not possible to measure the HCTF. The measurement experiment is twofold. Firstly, the active feedback control is applied to suppress the self-excited thermoacoustic oscillation in the Rijke tube. Secondly, the two-microphone method is applied to achieve the measurement of the HCTF at different working conditions. Experimental results show that the mean air flow velocity has an effect on the attenuation time of the thermoacoustic oscillation. Both of the mean air flow velocity and the electric-heating power have a significant effect on HCTFs.

Key words

Feedback control/Heat conduction transfer function/Rijke tube/Two-microphone method

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出版年

2022
Applied thermal engineering

Applied thermal engineering

EISCI
ISSN:1359-4311
被引量4
参考文献量49
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