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Applicability of Ionization Current Sensing Technique with Plasma Jet Ignition Using Pre-Chamber Spark Plug in a Heavy Duty Natural Gas Engine

机译:使用预腔火花塞在重型天然气发动机中使用预腔火花塞的电离电流检测技术的适用性

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This article deals with study of ionization current sensing technique's signal characteristics while operating with pre-chamber spark plug to achieve plasma jet ignition in a 6 cylinder 9 liter turbo-charged natural gas engine under EGR and excess air dilution. Unlike the signal with conventional spark plug which can be divided into distinct chemical and thermal ionization peaks, the signal with pre-chamber spark plug shows a much larger first peak and a negligible second peak thereafter. Many studies in past have found the time of second peak coinciding with the time of maximum cylinder pressure and this correlation has been used as an input to combustion control systems but the absence of second peak makes application of this concept difficult with pre-chamber spark plug. However, it has been observed that the first peak is very strong and does not deteriorate much even under lean operation and hence ion current signal integral can be used to calculate real time combustion stability parameters for combustion control systems. The correlation between the coefficient of variation (COV) of indicated mean effective pressure (IMEP) and ion current integral for operation at 5, 12 and 18 bar IMEP load under stoichiometric and diluted operation with EGR and excess air is presented in this article.
机译:这与电离电流检测技术的信号特性研究文章处理,同时用预燃室火花塞操作以实现EGR和过量空气稀释下一个6缸9升涡轮增压天然气发动机等离子体喷射点火。不像传统的火花塞的信号,该信号可以被分为不同的化学和热离子化的峰,具有预燃烧室的火花塞的示出了信号大得多的第一峰值,此后可忽略的第二峰值。在过去的许多研究发现第二个峰具有最大气缸压力的时间一致的时间,该相关性已被用作输入到燃烧控制系统,但没有第二峰值使得这个概念难以与预燃室火花塞的应用。然而,已经观察到的是,第一峰是非常强的,并且不即使在稀燃运行,因此离子电流信号积分可以用于计算燃烧控制系统实时燃烧的稳定性参数多恶化。在5,12和18巴IMEP负载下有EGR和过量空气化学计量和稀释操作指示平均有效压力(IMEP)和离子电流积分操作的变化(COV)的系数之间的相关性被呈现在这篇文章。

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