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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Development of an intelligent flame monitoring system for steel reheating burners
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Development of an intelligent flame monitoring system for steel reheating burners

机译:钢铁加热炉智能火焰监测系统的开发

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摘要

This article describes the development of a system to indirectly monitor the combustion characteristics of individual burners based on measurement and analysis of the signals detected from photodiodes detecting flame radiation signals. A series of experiments were conducted on a 500 kW pilot-scale furnace and on two 4 MW industrial burners located in two steel reheating furnaces. The flame radiation signals were monitored using a lens that transmitted the flame radiation to ultraviolet, visible and infrared photodiodes through a trifurcated optical fibre. The experiments covered a wide range of burner operating conditions including; variations in the burner load and excess air levels and simulations of burner imbalance. The relationships between the dynamic flame radiation signals and the burner operating parameters and conditions were made off-line using neural network models. The present work indicates that the measurement of flame radiation characteristics, coupled with neural networks, provides a promising means of monitoring and adjusting burner performance.
机译:本文介绍了一种系统的开发,该系统基于对检测火焰辐射信号的光电二极管检测到的信号进行测量和分析,从而间接监视单个燃烧器的燃烧特性。在500 kW中试炉和位于两个钢加热炉中的两个4 MW工业燃烧器上进行了一系列实验。使用透镜将火焰辐射信号监控,该透镜通过三叉光纤将火焰辐射传输到紫外,可见和红外光电二极管。实验涵盖了多种燃烧器操作条件,包括:燃烧器负载和过量空气水平的变化以及燃烧器不平衡的模拟。动态火焰辐射信号与燃烧器运行参数和条件之间的关系是使用神经网络模型离线进行的。本工作表明,火焰辐射特性的测量与神经网络相结合,为监视和调节燃烧器性能提供了一种有希望的手段。

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