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Comparing infrared emission from hydrocarbon C-H stretch during direct injection with and without reaction in an optical heavy duty engine

机译:在光学重型发动机直接喷射期间比较烃C-H拉伸的红外发射

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We present new imaging data comparing IR emission near 3.4 micron of non-reacting and reacting fuel jets from a 9:1 skip-fired optical engine. Images are shown for 3, 5, 7, and 10 crank-angle degrees after the start of injection at three top-dead-center ambient gas temperatures, 800 K 900 K and 1000 K. In addition to presenting qualitative instantaneous 2D images, we quantify differences using ensemble averaged longitudinal profiles of the non-reacting and reacting jets. We see that reaction increases emission by a factor of 2 to 3 during the jet development, prior to bowl-wall interaction. Following bowl-wall interaction, emission increases by a factor of more than 7. The influence of soot emission on the infrared signal is investigated with references to the 'Spray A' free jet from the Engine Combustion Network (ECN). The engine experimental in-cylinder condition is the ECN 900 K, 15.2 kg/m~3, 1500 bar rail-pressure injection with n-dodecane fuel. From prior ECN data, hot soot formed under similar conditions should emit 2 to 5 times more than unreacted vapor fuel. Improved diagnostics, e.g. simultaneous measurement of soot volume fraction with IR emission, are needed to provide insight about the fate and transport of unburned fuel in the presence of soot.
机译:我们将新的成像数据与在3.4微米的非反应附近的IR发射相比,从9:1跳过光学发动机的燃料喷射器附近。在注射起始后的三个顶死中心环境气体温度,800 k 900k和1000k之后,图像显示为3,5,7和10曲柄角度。除了呈现定性的瞬时2D图像外,我们使用非反应和反应喷射器的集合平均纵向轮廓量化差异。在碗壁相互作用之前,我们发现反应在喷射开发期间增加了2至3的发射。在碗壁相互作用之后,发射增加了超过7.对从发动机燃烧网络(ECN)的“喷射”自由射流的引用来研究红外信号对红外信号对红外信号的影响。发动机实验缸内条件是ECN 900K,15.2千克/ M〜3,1500巴轨 - 压力注射,具有N-十二烷燃料。从先前的ECN数据中,在类似条件下形成的热烟灰应比未反应的蒸汽燃料发射2至5倍。改进诊断,例如需要同时测量IR发射的烟灰体积分数,以便在烟灰存在下提供关于命运和未燃烧燃料的命运和运输的洞察力。

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