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Experimental Evaluation of a Novel High Frequency Ignition System Using a Flow-Reactor Set-up

机译:使用流量反应器设置的新型高频点火系统的实验评价

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Using diluted methane/air mixtures in internal combustion engines has a potential of reducing emissions and increasing efficiency. However, the ignition systems used today show difficulties igniting lean mixtures. For this purpose a new high frequency (HF) ignition system using pulse generators and a resonance circuit to achieve a controlled number of sparks during a controlled period of time has been developed. A first prototype of this high frequency system has been tested in a flow-reactor and compared to a conventional ignition system. Results show that the high frequency system improves the flame development under lean conditions compared to the conventional system. Higher frequencies have higher capability of igniting lean mixtures than lower frequencies. Lower spark frequencies were found to travel faster across the electrodes than high frequencies and also compared to the conventional system. High pressure and high flow rates affected the lean limit of all ignition strategies, but especially high spark frequencies had difficulties igniting the charge under high pressures, due to the resonant frequency changing with pressure. The high frequency system was also limited in the amount of available voltage. However, this will be improved with further development of the ignition system.
机译:在内燃机中使用稀释的甲烷/空气混合物具有减少排放和提高效率的潜力。然而,今天使用的点火系统显示出点燃精益混合物的困难。为此目的,已经开发了一种新的高频(HF)点火系统,使用脉冲发生器和谐振电路,以在受控时间期间实现受控的火花数。该高频系统的第一原型已经在流量 - 反应器中进行了测试,并与传统的点火系统进行比较。结果表明,与传统系统相比,高频系统改善了贫条件下的火焰开发。更高的频率具有比较低频率点燃稀薄混合物的更高能力。发现较低的火花频率在电极上比高频相比更快地行进,而且与传统系统相比。高压和高流量率影响了所有点火策略的精简限制,但由于压力的共振频率变化,尤其是在高压下点燃电荷的困难。高频系统也限制在可用电压的量。然而,随着点火系统的进一步发展,这将得到改善。

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