Investigation of the buoyancy effect on the thermoacoustic instability in an electrically heated Rijke tube

Jiale Liu, Bosheng Pang, Teng Wang, Lijun Yang, Jingxuan Li
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Abstract

Thermoacoustic instability typically presents in the operation of various engines and is harmful. It is thus necessary to investigate the influence mechanisms on it. When the effect of natural convection caused by buoyancy is equivalent to that of forced convection, the buoyancy effect will have a significant effect on the thermoacoustic instability. In order to study these effects, an electrically heated Rijke tube with adjustable pitch angle was designed. By adjusting the pitch angle under different operating conditions, the instability map as the functions of flow rates and heating powers was obtained. As the temperature field within the Rijke tube varies greatly at different pitch angles, its effect was also investigated associated with the numerical simulation. The results showed that the growth rates of the thermoacoustic instability exhibited a sinusoidal-like dependence on the pitch angle under certain operating conditions. This variation relationship only occurs when the Richardson number is sufficiently large.
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研究浮力效应对电加热雷克管热声不稳定性的影响
热声不稳定性通常出现在各种发动机的运行过程中,并且是有害的。因此,有必要研究其影响机制。当浮力引起的自然对流效果等同于强制对流效果时,浮力效应将对热声不稳定性产生重大影响。为了研究这些效应,我们设计了一个具有可调俯仰角的电加热雷克管。通过在不同的工作条件下调节俯仰角,得到了不稳定性图,它是流速和加热功率的函数。由于不同俯仰角下里耶克管内的温度场变化很大,因此还结合数值模拟对其影响进行了研究。结果表明,在特定工作条件下,热声不稳定性的增长率与螺距角呈正弦关系。只有当理查森数足够大时,才会出现这种变化关系。
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