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OBTAINING BIFURCATION DIAGRAMS WITH A THERMOACOUSTIC NETWORK MODEL

机译:用热声网络模型获得分叉图

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Linear techniques can predict whether the non-oscillating (steady) state of a thermoacoustic system is stable or unstable. With a sufficiently large impulse, however, a thermoacoustic system can reach a stable oscillating state even when the steady state is also stable. A nonlinear analysis is required to predict the existence of this oscillating state. Continuation methods are often used for this but they are computationally expensive.In this paper, an acoustic network code called LOTAN is used to obtain the steady and the oscillating solutions for a horizontal Rijke tube. The heat release is modelled as a nonlinear function of the mass flow rate. Several test cases from the literature are analysed in order to investigate the effect of various nonlinear terms in the flame model. The results agree well with the literature, showing that LOTAN can be used to map the steady and oscillating solutions as a function of the control parameters. Furthermore, the nature of the bifurcation between steady and oscillating states can be predicted directly from the nonlinear terms inside the flame model.
机译:线性技术可以预测热声系统的非振荡(稳定)状态是稳定还是不稳定。然而,在足够大的脉冲的情况下,即使当稳态也稳定时,热声系统也可以达到稳定的振荡状态。需要进行非线性分析来预测这种振荡状态的存在。为此,通常使用连续法,但是它们的计算量很大。在本文中,使用称为LOTAN的声学网络代码来获得水平Rijke管的稳态和振动解。热量释放被建模为质量流量的非线性函数。分析了文献中的几个测试案例,以研究火焰模型中各种非线性项的影响。结果与文献非常吻合,表明LOTAN可用于根据控制参数映射稳态和振动解。此外,可以直接从火焰模型内部的非线性项来预测稳态和振荡状态之间的分叉性质。

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