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Effect of the Pre-Chamber Orifice Geometry on Ignition and Flame Propagation with a Natural Gas Spark Plug

机译:预腔孔几何形状对天然气火花塞的点火和火焰繁殖的影响

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Natural gas is one of the promising alternative fuels due to the low cost, worldwide availability, high knock resistance and low carbon content. Ignition quality is a key factor influencing the combustion performance in natural gas engines. In this study, the effect of pre-chamber geometry on the ignition process and flame propagation was studied under varied initial mixture temperatures and equivalence ratios. The pre-chambers with orifices in different shapes (circular and slit) were investigated. Schlieren method was adopted to acquire the flame propagation. The results show that under the same cross-section area, the slit pre-chamber can accelerate the flame propagation in the early stages. In the most of the cases, the penetration length of the flame jet and flame area development are higher in the early stages of combustion.
机译:由于成本低,全球可用性,高抗抗抗抗抗抗性和低碳含量,天然气是有前途的替代燃料之一。 点火质量是影响天然气发动机燃烧性能的关键因素。 在该研究中,在不同初始混合温度和等效比率下研究了预室几何形状对点火过程和火焰繁殖的影响。 研究了不同形状(圆形和狭缝)的孔的预腔。 采用Schlieren方法来获得火焰繁殖。 结果表明,在相同的横截面区域下,狭缝预室可以加速早期阶段的火焰传播。 在大多数情况下,火焰射流和火焰区域显影的穿透长度在燃烧的早期阶段较高。

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