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ASSESSMENT OF THE COMBUSTION BEHAVIOR OF A PILOT-SCALE GAS TURBINE BURNER USING IMAGE PROCESSING

机译:基于图像处理的中试燃气轮机燃烧性能评估

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Experimental investigations were performed on a non-premixed liquid fuel-lean burner. The present work aims to the development of a methodology for the recognition of flame instability regimes in industrial and aeronautical burners. Instability, in fact, is an unpleasant aspect of combustive system that negatively impacts on combustion efficiency. The online monitoring of the occurrence of instability conditions, permits to adjust combustion parameters (as fuel or air mass flow, temperature, pressure, etc.) and to stabilize again the flame. High speed visualization systems are promising methods for on-line combustion monitoring. In this study two high speed visualization systems in the visible range and in the infrared spectral region were applied to characterize combustion efficiency and flame stability. Different processing techniques were used to extract representative data from flame images. Wavelet Decomposition and Spectral analysis of pixel intensities of flame images were used for feature extraction. Finally a statistical analysis was performed to identify the most unstable regions of the flame by the pixel intensity variance.
机译:实验研究是在非预混合稀液燃料燃烧器上进行的。本工作旨在开发一种用于识别工业和航空燃烧器中火焰不稳定状态的方法。实际上,不稳定性是燃烧系统的不利方面,会对燃烧效率产生负面影响。在线监测不稳定状况的发生,可以调整燃烧参数(如燃料或空气质量流量,温度,压力等)并再次稳定火焰。高速可视化系统是用于在线燃烧监测的有前途的方法。在这项研究中,在可见光范围和红外光谱范围内使用了两个高速可视化系统来表征燃烧效率和火焰稳定性。使用不同的处理技术从火焰图像中提取代表性数据。小波分解和火焰图像像素强度的光谱分析被用于特征提取。最后,进行了统计分析,以通过像素强度变化来识别火焰的最不稳定区域。

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