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Technical evaluation of vehicle ignition systems: conduct differences between a high energy capacitive system and a standard inductive system

机译:车辆点火系统的技术评估:高能电容系统和标准感应系统之间的传导差异

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摘要

An efficient combustion depends on many factors, such as injection, turbulence and ignition characteristics. With the improvement of internal combustion engines the turbulence intensity and internal pressure have risen, demanding more efficient and powerful ignition systems. In direct injection engines, the stratified charge resultant from the wall/air-guided or spray-guided system requires even more energy. The Paschen’s law shows that spark plug gap and mixture density are proportional to the dielectric rupture voltage. It is known that larger spark gaps promote higher efficiency in the internal combustion engines, since the mixture reaction rate rises proportionally. However, the ignition system must be adequate to the imposed gap, not only on energy, but also on voltage and spark duration. For the reported study in this work two test benches were built: a standard inductive ignition system and a capacitive discharge high energy ignition system, with variable voltage and capacitance. The influence of the important parameters energy and ignition voltage on the spark duration, as well as the electrode gap and shape were analyzed. It was also investigated the utilization of a coil with lower resistance and inductance values, as well as spark plugs with and without internal resistances. 
机译:有效的燃烧取决于许多因素,例如喷射,湍流和点火特性。随着内燃机的改进,湍流强度和内部压力已经增加,需要更有效和强大的点火系统。在直喷式发动机中,由壁/空气引导或喷雾引导系统产生的分层装料甚至需要更多的能量。帕申定律表明,火花塞间隙和混合物密度与电介质破裂电压成正比。已知较大的火花隙在内燃机中提高了效率,因为混合反应速率成比例地提高。但是,点火系统不仅要在能量上,而且要在电压和火花持续时间上都必须有足够的间隙。对于这项工作中的报道研究,建立了两个测试台:一个标准的感应点火系统和一个具有可变电压和电容的电容放电高能点火系统。分析了重要参数能量和点火电压对火花持续时间以及电极间隙和形状的影响。还研究了使用具有较低电阻和电感值的线圈以及带有和不带有内部电阻的火花塞的情况。

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