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A Study of Energy Enhanced Multi-Spark Discharge Ignition in a Constant-Volume Combustion Chamber

机译:恒定燃烧室中能量增强多火花出点火的研究

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Multi-spark discharge (MSD) ignition is widely used in high-speed internal combustion engines such as racing cars, motorcycles and outboard motors in attempts to achieve multiple sparks during each ignition. In contrast to transistor coil ignition (TCI) system, MSD system can be greatly shortened the charging time in a very short time. However, when the engine speed becomes higher, the ignition will be faster, electrical energy stored in the ignition system will certainly become less, especially for MSD system. Once the energy released into the spark plug gap can’t be guaranteed sufficiently, ignition will become more difficult, and it will get worse in some harsh environment such as strong turbulence or lean fuel conditions. With these circumstances, the risks of misfire and partial combustion will increase, which can deteriorate the power outputs and exhaust emissions of internal combustion engine. Therefore, in order to extend the ignitability limit and reduce the combustion variation without sacrificing spark energy for high speed engines, an energy enhanced multi-spark discharge (EEMSD) ignition system is developed in this study. The principle of EEMSD system is based on the capacitor discharge, it can generate 5-15kHz high-frequency sparks. Firstly, the driver circuit design and control strategy of the proposed ignition system is described. Secondly, the characteristics of discharge current and voltage are measured and analyzed under three different working frequencies. Finally, a detailed combustion experiment is investigated comparing with traditional MSD ignition system in a constant-volume combustion chamber by using the shadowgraph method. Results show that the EEMSD system has a very short charging time comparing with TCI system, and it can release much more energy into the spark plug gap, which can format a larger volume of the spark kernel and accelerate early flame propagation.
机译:多火花油(MSD)点火广泛用于高速内燃机,如赛车,摩托车和外侧电机,在每次点火过程中达到多个火花。与晶体管线圈点火(TCI)系统相比,MSD系统可以在很短的时间内大大缩短充电时间。然而,当发动机速度变高时,点火将更快,存储在点火系统中的电能肯定会越大,特别是对于MSD系统。一旦释放到火花塞隙的能量就不能充分保证,点火将变得更加困难,并且在一些恶劣的环境中会变得更糟,如强大的湍流或贫燃料条件。在这种情况下,失火和部分燃烧的风险将增加,这可能会使内燃机的电力输出和排气劣化。因此,为了在不牺牲高速发动机的不牺牲火花能量的情况下,为了延长可燃性极限并降低燃烧变化,在该研究中开发了能量增强的多火花放电(EEMSD)点火系统。 EEMSD系统的原理基于电容器放电,它可以产生5-15kHz的高频火花。首先,描述了所提出的点火系统的驱动电路设计和控制策略。其次,测量放电电流和电压的特性,并在三个不同的工作频率下进行分析。最后,通过使用影子图法研究了与恒定体积燃烧室中传统的MSD点火系统进行了详细的燃烧实验。结果表明,与TCI系统相比,EEMSD系统具有非常短的充电时间,它可以将更多的能量释放到火花塞隙中,这可以格式化大量的火花内核并加速早期火焰传播。

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