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Application of advanced laser diagnostics for the investigation of the ionization sensor signal in a combustion bomb

机译:先进的激光诊断技术在燃烧弹中电离传感器信号调查中的应用

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摘要

The ionization sensor is an electrical probe for diagnostics in internal combustion engines. Laser-induced fluorescence (LIF) imaging of fuel, hydroxyl (OH), and nitric oxide (NO) distributions has been employed to extend our knowledge about the governing processes leading to its signal. By monitoring the flame propagation in quiescent and turbulent mixtures, the cycle-to-cycle variations in the early sensor signal was attributed to the stochastic contact between flame front and electrodes. An analysis of the relationship between gas temperature and sensor current in the post-flame gas suggests a dominant role of alkali traces in the ionization process at the conditions under study. Significant cooling of the burned gas in the vicinity of the electrodes was observed in quiescent mixtures. Imaging of the post-flame gas in turbulent combustion revealed moving structures with varying NO and OH concentrations, which were identified as sources of variation in the sensor current.
机译:电离传感器是用于内燃机诊断的电探针。燃料,羟基(OH)和一氧化氮(NO)分布的激光诱导荧光(LIF)成像已被用来扩展我们对导致其信号的调控过程的知识。通过监测火焰在静态混合物和湍流混合物中的传播,早期传感器信号的逐周期变化归因于火焰前部和电极之间的随机接触。对燃烧后气体中气体温度与传感器电流之间关系的分析表明,在所研究的条件下,碱痕迹在电离过程中起主要作用。在静态混合物中,观察到电极附近的燃烧气体明显冷却。湍流燃烧中火焰后气体的成像显示出具有变化的NO和OH浓度的移动结构,这些被确定为传感器电流变化的来源。

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