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ASSESSMENT OF METHODS FOR THE COMPUTATION OF THE LINEAR STABILITY OF COMBUSTORS

机译:燃烧器线性稳定性计算方法的评估

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摘要

Although combustion instabilities of low-emission combustion processes have become a major problem in recent years, the prediction of the stability limits of confined flows with heat release is still in its infancy. The most widely used method for the modeling of complicated thermoacoustic systems is based on linear acoustics and a representation of the system as a network of "elements," that is, acoustic multiports. Based on such a network, a linear system of equations is constructed from the transfer matrices of the different elements that serves as the basis for investigating the system dynamics. By employing such a network representation of a simple combustor, predictions of thermoacoustic stability obtained with three different methods of stability analysis are compared in this article. It is found that the commonly employed open-loop stability analysis based on a Bode plot can lead to erroneous results. Similar problems may occur with the analysis of the open-loop gain using a Nyquist diagram, as long as control theory methodology is applied to the thermoacoustic system without modifications. The study reveals that the stability analysis of combustors using these methods does not necessarily result in all unstable modes.
机译:尽管近年来,低排放燃烧过程的燃烧不稳定性已成为一个主要问题,但对伴随热释放的受限流的稳定性极限的预测仍处于起步阶段。用于复杂热声系统建模的最广泛使用的方法是基于线性声学,并且将系统表示为“元素”网络,即声学多端口。基于这样的网络,由不同元素的传递矩阵构成线性方程组,这是研究系统动力学的基础。通过使用这种简单燃烧器的网络表示形式,本文比较了通过三种不同的稳定性分析方法获得的热声稳定性的预测。发现基于伯德图的常用开环稳定性分析可能导致错误的结果。只要将控制理论方法应用于未经修改的热声系统,使用奈奎斯特图分析开环增益可能会出现类似的问题。研究表明,使用这些方法对燃烧器进行稳定性分析并不一定会导致所有不稳定模式。

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