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THE MONITORING AND CONTROL OF BURNERS CO-FIRING COAL AND BIOMASS

机译:煤和生物质共烧锅炉的监控

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The monitoring and control of combustion systems co-firing coal and biomass is a critical consideration when aiming to increase the proportion of biomass being combusted. This is because it is likely that the combustion will become increasingly unstable as the biomass proportion increases. In order to develop a flame monitoring and control system, flame signal data sets were collected from combustion measurements taken on a 500kW pilot scale combustion test facility. The sensors used were photodiodes with sensitivities in the UY, visible and IR wavelengths. The analysis of these data, identified flame features that can be related to operational parameters such as flame stability, excess air level, NOx and CO emissions. These features were then applied in the development of an intelligent flame monitoring and optimisation system for individual burners based on these low cost sensors. The testing of the monitoring and control system on a pilot scale burner and at full scale are described in this paper.
机译:当试图增加正在燃烧的生物质的比例时,对燃烧煤和生物质的燃烧系统进行监控是至关重要的考虑因素。这是因为随着生物质比例的增加,燃烧可能变得越来越不稳定。为了开发火焰监测和控制系统,从在500kW中试规模燃烧测试设备上进行的燃烧测量中收集了火焰信号数据集。所使用的传感器是在UY,可见光和IR波长中具有灵敏度的光电二极管。通过对这些数据的分析,可以确定与运行参数(例如火焰稳定性,过量空气水平,NOx和CO排放量)相关的火焰特征。然后将这些功能应用于基于这些低成本传感器的用于单个燃烧器的智能火焰监控和优化系统的开发中。本文介绍了在中试规模燃烧器上进行监视和控制系统的全面测试。

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