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首页> 外文期刊>SAE International Journal of Engines >The Influence of Hot Gas Jet on Combustion Enhancement for Lean Mixture in Plasma Jet Ignition
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The Influence of Hot Gas Jet on Combustion Enhancement for Lean Mixture in Plasma Jet Ignition

机译:热气喷射对等离子喷射点火稀混合气燃烧增强的影响

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This study clarified the influence of hot gas jet on combustion enhancement effect for lean mixture in the plasma jet ignition. The hot gas jet was generated by the high temperature plasma and was ejected from igniter after plasma jet finished issuing. In combustion tests, propane-air mixture at equivalence ratio of 0.6 was used and the mixture was filled in the combustion chamber at atmosphere pressure and room temperature. For generation of the hot gas jet, the standard air was filled in chamber at same conditions and the hot gas jet was visualized by schlieren method in the absence of combustion. The combustion development processes were also visualized and the combustion pressure was measured. The discharge voltage, discharge current and the plasma luminescence were also measured. The plasma luminescence disappeared within 0.05 ms for any experimental conditions. When cavity depth was deep and orifice diameter was small, the maximum plasma luminescence height was short. However, the hot gas jet ejection velocity was increased as the cavity volume increased and orifice diameter decreased. At 0.5 ms after the ignition, both initial flame kernel and hot gas jet were similarly developed. However, the combustion was continuously enhanced after the hot gas jet disappeared. This is because the initial flame kernel was enlarged and turbulence was generated on flame front by the hot gas jet effect. In case of a large volume cavity and small diameter orifice of igniter, the flame propagation was enhanced and combustion duration was shortened. The high voltage discharge duration was very short as compared with combustion period and the initial flame kernel was similarly developed as hot gas jet, therefore the combustion enhancement effect of plasma jet ignition was mainly caused by the hot gas jet effect.
机译:本研究阐明了等离子喷射点火中热气喷射对稀薄混合气燃烧增强效果的影响。高温等离子体产生的热气体射流,等离子射流完成后从点火器中喷出。在燃烧试验中,使用丙烷与空气的当量比为0.6的混合物,并在大气压和室温下将混合物填充到燃烧室中。为了产生热气体射流,在相同条件下将标准空气填充到腔室中,并且在不燃烧的情况下通过席列伦方法使热气体射流可见。燃烧过程也被可视化并测量了燃烧压力。还测量了放电电压,放电电流和等离子体发光。对于任何实验条件,血浆发光均在0.05毫秒内消失。当腔深较深且孔口直径较小时,最大等离子体发光高度较短。但是,随着腔体积的增加和孔口直径的减小,热气体的喷射速度会增加。点火后0.5毫秒,初始火焰核和热气体射流都类似地形成。然而,在热气体喷射消失之后,燃烧持续增强。这是因为初始火焰核扩大了,并且由于热气体喷射效应在火焰前沿产生了湍流。在大容积空腔和小直径点火器孔的情况下,火焰传播增强,燃烧时间缩短。与燃烧期间相比,高压放电持续时间非常短,并且初始火焰核与热气体射流类似地发展,因此等离子射流点火的燃烧增强效果主要是由热气体射流引起的。

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