基于图像处理诊断的直喷火花点火光学发动机火焰发射特性研究

Zhe Sun, Zhen-Wei Ma, Xuesong Li, Min Xu
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引用次数: 1

摘要

在火焰研究中,非侵入式测量总是可取的,特别是在内燃机的研究中,侵入式测量通常不适用。利用数字图像处理和色彩分析,可以将成像系统转化为抽象的多光谱系统来确定火焰发射的特性。首先,本研究进行了精确的校准,以建立相机光谱响应与乙醇扩散火焰自由基发射之间的光谱相关性。采用HSV的颜色模型来表示相机的光谱响应。扩散火焰的每个原子团的实际波长也用摄谱仪进行了测定。随后的实验是将光谱相关性应用于直喷火花点火光学发动机,研究其燃烧行为。采用两种不同喷嘴结构的喷油器,分别进行了试验。高速成像系统拍摄了数百个发动机燃烧循环,每个循环涵盖了从火焰点燃阶段到燃烧结束的传播。在这些循环中,感兴趣的自由基的存在被捕获并用顺化度表示。
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Flame Emission Characteristics in a Direct Injection Spark Ignition Optical Engine Using Image Processing Based Diagnostics
Non-intrusive measurements are always desirable in flame research, particularly in the study of internal combustion engines where intrusive measurements are usually not applicable. With the use of digital image processing and color analysis, the imaging system can be turned into an abstract multi-spectral system to determine the characteristics of flame emission. First this study conducts a precise calibration to make up a spectral correlation between the camera spectrum responses and the radical emissions of an ethanol diffusion flame. The color model of HSV is used to represent the camera spectrum responses. The actual wavelength of each radical of the diffusion flame has also been examined using a spectrograph. Subsequent experiment is the application of the spectral correlation into a direct injection spark ignition optical engine to research the combustion behavior. Two fuel injectors, different in nozzle configuration, were utilized and tested individually. The high-speed imaging system films hundreds of engine combustion cycles, and each cycle covers the propagation from the flame ignition stage towards the end of combustion. In those cycles, the presence of radicals of interest was captured and represented by Hue degree.
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