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Investigation of combustion instability in a swirl-stabilized combustor using symbolic time series analysis

机译:基于符号时间序列分析的旋流稳定燃烧室燃烧不稳定性研究

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A laboratory-scale swirl-stabilized combustor is experimentally characterized for various configurations involving variable air flow rates and different fuel injection locations. Unsteady pressure and heat release rate measurements were obtained simultaneously in order to determine the stability map of the combustor for the experimented configurations. It is observed that a sharp rise in pressure amplitude coincides with a break in the dominant spectral content variation with the inlet Reynolds number. The time series data were analyzed by using the tools of symbolic dynamic filtering and the divergences among the outputs of each sub-class of observations were obtained as anomaly measures. In the proposed method, symbol strings are generated by partitioning the (finite-length) time series to construct a special class of probabilistic finite state automata (PFSA) that have a deterministic algebraic structure. The anomaly measures are defined based on the probabilistic state vectors distribution across each sub class. The method which is based on representing a given time series data as a set of PFSA is observed to be capable of predicting an impending combustion instability as well as to distinguish between the symbol-state distribution among various instability conditions. The measure also successfully captures changes in the thermo-acoustic regime as a function of the fuel injection location.
机译:实验证明,实验室规模的旋流稳定燃烧器具有各种配置,包括可变的空气流量和不同的燃料喷射位置。同时获得非稳态压力和放热率的测量值,以确定实验配置的燃烧室稳定性图。可以看到,压力振幅的急剧上升与随入口雷诺数变化的主要光谱含量变化的发生相吻合。使用符号动态过滤工具分析了时间序列数据,并获得了每个子观测类别的输出之间的差异作为异常度量。在所提出的方法中,通过划分(有限长度)时间序列来生成符号字符串,以构造具有确定代数结构的特殊类别的概率有限状态自动机(PFSA)。基于跨每个子类的概率状态向量分布来定义异常度量。观察到基于将给定的时间序列数据表示为一组PFSA的方法,该方法能够预测即将发生的燃烧不稳定性,并能够区分各种不稳定性条件之间的符号状态分布。该措施还成功地捕获了作为燃料喷射位置的函数的热声状态的变化。

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