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An experimental investigation of the sensitivity of the ignition and combustion properties of a single-cylinder research engine to spark-assisted HCCI

机译:单缸研究型发动机对火花辅助HCCI的点火和燃烧特性敏感性的实验研究

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Spark-assisted homogeneous charge compression ignition (HCCI) combustion may be a method to improve the operation of HCCI engines. In the current study, the impact of spark assist on the fundamental properties of ignition and combustion was investigated in a single cylinder, optically-accessible research engine. Early port fuel injection and air preheating were used with indolene fuel in the study. The effects of a range of air preheat (T in = 256–281 °C), fuel/air equivalence ratio (ϕ = 0.38–0.62) and spark assist timing (10°−90° before top dead centre) conditions on maximum in-cylinder pressure and timing, cycle variability, indicated mean effective pressure (IMEP) and heat release rate were investigated. Additionally, high-speed imaging was used to capture the piston-view ignition and combustion events during spark-assisted and unassisted HCCI operation. Methods were developed and applied to the imaging sequences to quantify the physical characteristics (e.g. location of autoignition sites) and the rate of propagation of the reaction fronts formed during spark-assisted and unassisted HCCI operation. The imaging data show that autoignition sites appear with increasing frequency as air preheat temperature is increased. The addition of spark assist led to the formation of reaction fronts at all conditions that propagated outward from the spark electrode at average speeds between 1.9 and 4.3 m/s. The imaging data indicate the effects of spark assist are due to compression heating of the unburned gases by the propagating reaction fronts which also leads to more consistent location of autoignition. Comparison of the imaging and engine data show the initial formation of the reaction fronts are not significant sources of heat release. While the engine data show that spark assist can affect phasing, heat release rate, IMEP and engine stability at the marginal HCCI operating conditions studied, the results also indicate spark assist has a narrow temperature range where the changes will be significant compared to the effects of the inherent thermal stratification of the HCCI fuel/air charge.
机译:火花辅助均质充量压缩点火(HCCI)燃烧可能是改善HCCI发动机运行的一种方法。在当前的研究中,在单缸,光学可访问的研究引擎中研究了火花辅助对点火和燃烧基本特性的影响。在研究中,将早期端口燃料喷射和空气预热与吲哚燃料一起使用。一定范围的空气预热(T in = 256–281°C),燃油/空气当量比(ϕ = 0.38–0.62)和火花辅助正时(顶部前10°-90°)的影响在最大缸内压力和正时,循环变化,指示平均有效压力(IMEP)和放热率方面的条件进行了研究。另外,在火花辅助和非辅助HCCI操作过程中,使用高速成像来捕获活塞视图的点火和燃烧事件。开发了方法并将其应用于成像序列以量化物理特性(例如自燃点的位置)和在火花辅助和非辅助HCCI操作过程中形成的反应前沿的扩散速率。成像数据表明,随着空气预热温度的升高,自燃点的出现频率增加。火花助剂的添加导致在所有条件下以从1.9到4.3 m / s的平均速度从火花电极向外传播的反应前沿形成。成像数据表明火花助燃的效果是由于传播的反应前沿对未燃烧气体的压缩加热所致,这也导致自燃位置更加一致。成像和发动机数据的比较表明,反应前沿的初始形成不是重要的热释放源。虽然发动机数据显示在研究的临界HCCI运行条件下火花助燃会影响定相,放热率,IMEP和发动机稳定性,但结果还表明,火花助燃具有较窄的温度范围,与以下情况相比,变化会很明显。 HCCI燃料/充气的固有热分层。

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