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DISCHARGE CHARACTERISTICS OF CURRENT BOOSTED SPARK EVENTS UNDER FLOW CONDITIONS

机译:流动条件下当前升起的火花事件的放电特性

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With the advancement of spark ignition engines, lean or diluted in-cylinder charge is often used to improve the engine performance. Enhanced in-cylinder charge motion is widely applied under such conditions to promote the flame propagation, which raise challenges for the spark ignition system. In this work, the spark discharging process is investigated under different flow conditions via both optical diagnosis and electrical measurement. Results show that the spark plasma channel is stretched under flow conditions. A higher discharge current can maintain the stretched spark plasma for a longer duration. Re-strikes are observed when the spark plasma is stretched to a certain extent. The frequency of re-strikes increases with increased flow velocity and decreased discharge current level. The discharge duration reduces with the increased flow velocity. The effects of gas flow on the ignition and flame kernel development are studied in a constant volume optical combustion chamber with premixed lean and stoichiometric methane air mixture. Two spark strategies with low and high discharge current are used for the ignition. The flame propagation speed of both lean and stoichiometric mixtures increases with the increased gas flow velocity. A higher discharge current level retains a more stable spark channel and improves the flame kernel development for both lean and stoichiometric conditions, especially under the higher gas flow velocity of 20 m/s.
机译:随着火花点火发动机的发展,稀薄或稀释的缸内充气通常用于改善发动机性能。在这种条件下,增强的缸内充气运动被广泛应用以促进火焰传播,这对火花点火系统提出了挑战。在这项工作中,通过光学诊断和电气测量研究了在不同流动条件下的火花放电过程。结果表明火花等离子体通道在流动条件下被拉伸。较高的放电电流可以使拉伸的火花等离子体保持更长的持续时间。当火花等离子体拉伸到一定程度时,会观察到重新击打。重击的频率随着流速的增加和放电电流水平的降低而增加。放电持续时间随着流速的增加而缩短。在恒定体积的稀燃和化学计量的甲烷空气混合气的光学燃烧室中研究了气流对点火和火焰核发展的影响。点火使用低放电电流和高放电电流的两种火花策略。稀薄混合物和化学计量混合物的火焰传播速度都随气体流速的增加而增加。较高的放电电流水平会保留更稳定的火花通道,并在稀薄和化学计量条件下都改善火焰核的发展,尤其是在20 m / s的较高气体流速下。

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