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REAL-TIME MONITORING OF DYNAMICAL STATE CHANGES IN STAGED COMBUSTION

机译:分级燃烧中动态状态变化的实时监测

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摘要

We describe techniques for diagnosing the state of coal-fired utility burners using dynamic characteristics of the output of optical flame scanner signals. The analysis techniques are optimized for targeting dynamical features associated with nonlinear instabilities that develop as burner operating parameters are changed. Various specific instability indicators are used, including shifts in probability distributions, temporal asymmetry and coarsed-grained descriptions of unstable periodicities. We show that careful application of such methods can accurately characterize a range of different flame states. Specifically, transitions through bifurcation points between attached and lifted flames are targeted, giving insight into causes of instability such as stoichiometry or feed and flow variations. We demonstrate results from the application of these methods to utility-scale staged pulverized-coal burners in a real-time software package. The Flame Doctor~(TM) burner-monitoring software is presently undergoing plant-implementation trials in a program sponsored by the Electric Power Research Institute and participating utilities. In a practical application, we show how real-time monitoring and intervention can significantly mitigate adverse combustion conditions.
机译:我们描述了使用光学火焰扫描仪信号的输出动态特性诊断燃煤公用燃烧器状态的技术。分析技术经过优化,以针对与非线性不稳定性相关的动态特征,这些非线性特征随着燃烧器工作参数的变化而发展。使用了各种特定的不稳定性指标,包括概率分布的变化,时间不对称以及不稳定周期的粗粒度描述。我们表明,仔细使用这些方法可以准确地表征一系列不同的火焰状态。具体来说,目标是通过附连火焰和提升火焰之间的分叉点进行过渡,从而深入了解不稳定的原因,例如化学计量或进料和流量变化。我们通过实时软件包演示了将这些方法应用于公用事业规模的粉煤燃烧器的结果。目前,Flame Doctor〜(TM)燃烧器监控软件正在由电力研究所和参与的公用事业发起的计划中进行工厂实施试验。在实际应用中,我们展示了实时监控和干预如何显着减轻不利的燃烧条件。

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