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Flame Contour Analysis through UV-Visible Imaging during Regular and Abnormal Combustion in a DISI Engine

机译:通过在DISI发动机中常规和异常燃烧期间通过UV可见成像进行火焰轮廓分析

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Crank angle resolved imaging in the UV-visible spectral range was used to investigate flame front characteristics during normal combustion, surface ignition and light knock conditions. ‘Line of sight’ measurements provided information on local wrinkling: the evaluation was based on a statistical approach, with multiple frames taken at the same crank angle during consecutive cycles. This allowed the results during normal combustion to be representative for the specific operational conditions and to a good degree independent from the effects of cyclic variation. Abnormal combustion on the other hand, was investigated on a cycle-to-cycle basis, given the stochastic nature of such phenomena. The experimental trials were performed at fixed engine speed on an optically accessible direct injection spark ignition (DISI) engine equipped with the cylinder head of a four cylinder 16-valves commercial power unit. The absolute intake pressure was fixed at 1.5 bar and the air-fuel mixture was set close to stoichiometric. Commercial gasoline with an octane rating of 95 RON was used for all investigated conditions. Different flame contour characteristics were identified in different combustion phases, suggesting that the influence of local fluid dynamics is exerted differently as the fuel oxidation progresses from the central kernel initiated by the spark towards the cylinder walls. Surface ignition and auto-ignition were found to occur near the outer walls of the combustion chamber and the main flame front was found to be influenced to a relatively reduced degree by these secondary ignition sites.
机译:UV可见光谱范围内的曲柄角分辨成像用于研究正常燃烧,表面点火和光爆裂条件期间的火焰前部特性。 “视线”测量提供了有关局部皱纹的信息:评估基于统计方法,在连续循环期间以相同的曲柄角拍摄多个帧。这使得在正常燃烧期间的结果是特定操作条件的代表性,并且与循环变异的影响无关。鉴于这种现象的随机性质,另一方面,在循环到循环的基础上研究了异常燃烧。实验试验是在固定的发动机速度上的光学访问的直接喷射火花点火(DISI)装备有四缸16阀商用电源单元的气缸盖的发动机进行的。将绝对的进气压力固定在1.5巴,并且空气 - 燃料混合物被设定为贴近化学计量。所有调查条件用于辛烷值的商业汽油,辛烷值为95 ron。在不同的燃烧相中鉴定了不同的火焰轮廓特性,表明当燃料氧化从由火花朝向汽缸壁发起的中央核来进展时,局部流体动力学的影响不同。发现表面点火和自动点火在燃烧室的外壁附近发生,并且发现主火焰前部受到这些二次点火部位的相对降低的程度。

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