电极表面粗糙度对火花点火影响的研究

Mohammadrasool Morovatiyan, M. Shahsavan, M. Shen, J. H. Mack
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引用次数: 9

摘要

低燃发动机因其减少排放、提高燃油效率和减轻发动机爆震的能力而非常重要。在这项研究中,火花塞电极的表面粗糙度作为一个潜在的途径,以扩大天然气的贫可燃性极限进行了研究。对火花塞电极表面进行了纳米/微形貌改性,提高了火花塞电极的表面粗糙度。采用高速z型纹影可视化技术,研究了不同稀薄当量比下甲烷-空气预混装药中电极表面粗糙度对火花点火过程的影响。为了观察点火的开始和火焰核行为,实验在一个光学可及的恒定体积燃烧室中进行。结果表明,通过调节火花塞电极的表面粗糙度,可以降低火花点燃甲烷的低可燃性极限。
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Investigation of the Effect of Electrode Surface Roughness on Spark Ignition
Lean-burn engines are important due to their ability to reduce emissions, increase fuel efficiency, and mitigate engine knock. In this study, the surface roughness of spark plug electrodes is investigated as a potential avenue to extend the lean flammability limit of natural gas. A nano-/micro-morphology modification is applied on surface of the spark plug electrode to increase its surface roughness. High-speed Z-type Schlieren visualization is used to investigate the effect of the electrode surface roughness on the spark ignition process in a premixed methane-air charge at different lean equivalence ratios. In order to observe the onset of ignition and flame kernel behavior, experiments were conducted in an optically accessible constant volume combustion chamber at ambient pressures and temperatures. The results indicate that the lean flammability limit of spark-ignited methane can be lowered by modulating the surface roughness of the spark plug electrode.
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