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Characterization of Spark Discharges at High Pressure Conditions by Spectral Line Broadening

机译:通过谱线展观,在高压条件下发出火花放电的特征

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One of the most famous applications of spark discharges is the ignition of the petrol-air mixture in a cylinder of an Otto engine. In the system, an ignition coil generates a high voltage up to 45 kV that causes a spark between the electrodes of a spark plug. Spark plugs typically work in a pressure range of 10 to 30 bars close to the ignition point of a modern Otto engine. This ignition technology is wellengineered, but the plasma parameters, namely gas temperature and electron density of the spark plasma at high pressure conditions are unknown. For a conventional ignition system the electrode gap of the spark plug is 0.7 mm and the duration of this plasma is only a few hundreds of nanoseconds, which makes a challenge to infer consistent and reproducible results.
机译:火花排出的最着名应用之一是汽油气混合物在奥托发动机的汽缸中点火。在系统中,点火线圈产生高达45kV的高电压,导致火花塞的电极之间的火花。火花塞通常在10到30巴的压力范围内工作,靠近现代Otto发动机的点火点。该点火技术是合适的,但在高压条件下的等离子体参数,即火花等离子体的气体温度和电子密度是未知的。对于传统的点火系统,火花塞的电极间隙为0.7mm,并且该等离子体的持续时间仅为几百纳秒,这对推断一致和可重复的结果进行了挑战。

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