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Evaluation of the Ignition Effect in Constant Volume Combustion Chamber Based on Matching Effect of High Voltage (MEHV) Method

机译:基于高压(MEHV)法的常量燃烧室恒储室点火效应评价

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摘要

The characteristics of spark ignition with a constant volume combustion chamber (CVCC) is evaluated for the efficiency of capacitive-assisted ignition (CAI), such as spark kernel and flame growth. The conventional spark method and matching effect of high voltage (MEHV) method are evaluated to compare the spark growth distribution characteristics. To do this study, a plasma system is used and is consisted of input power, three capacitors, a transformer, high voltage cable, J-type of a spark plug, diode, and CVCC. The experiment is conducted under various operating conditions, such as 1 bar, 295 K of initial temperature, 50, 100, 150 V of ignition box, 400 V of MEHV, 0.7 ms of spark duration, and 0 kΩ of plug resistor. The results show that the spark growth at the initial voltages of 100 V and 150 V has the same characteristic, and the surface area is increased by 13 mm2 at 150 V compared to 100 V because capacitance energy stored in three capacitors is efficiently induced by the effect of dielectric breakdown and electron collision. Consequently, the spark growth of MEVH is widely distributed atmospheric more than the conventional spark, and the internal temperature of the spark kernel could be presumed to change the non-thermal plasma to thermal plasma by MEHV.
机译:评估用恒定体积燃烧室(CVCC)的火花点火的特性,用于电容辅助点火(CAI)的效率,例如火花核和火焰生长。评估了高电压(MEHV)方法的常规火花法和匹配效果以比较火花生长分布特性。为此,使用等离子体系统,包括输入电源,三个电容,变压器,高压电缆,j型的火花塞,二极管和CVCC组成。该实验在各种操作条件下进行,例如1巴,295 k初始温度,50,100,150V点火箱,400V的MEHV,0.7ms火花持续时间,0kΩ的插头电阻。结果表明,100V和150V的初始电压下的火花生长具有相同的特性,并且表面积在150V中增加13mm2,而100 V相比,由于三个电容器中存储在三个电容中的电容能量被有效地引起介电击穿和电子碰撞的影响。因此,MeVH的火花生长广泛分布于常规火花的大气,并且可以推测火花核的内部温度以通过MEHV将非热等离子体改变为热等离子体。

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