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Visualization of combustion performance and emission characteristics of a four-cylinder diesel engine at various inlet oxygen concentrations at part loads

机译:四缸柴油发动机在部分负载下的四缸柴油发动机的燃烧性能和排放特性的可视化

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Although exhaust gas recirculation (EGR) is a common way to suppress the nitrogen oxide (NOX) emissions, it also brings some negative impact on soot emissions and the thermal efficiency in internal combustion engines. We investigated the effects of ambient oxygen concentrations on engine performance, combustion characteristics, and emissions using a four-cylinder diesel engine equipped with an endoscopic visualization system. To estimate the flame temperature and soot distribution, we analyzed these images using a postprocessing program. Experimental results showed that the luminosity of flames in the images was degraded comparatively for the reduced oxygen concentration. Flame temperature distribution also showed similar behavior. As the oxygen concentration decreased, area of soot distribution significantly reduced at IMEP = 0.13 MPa, and only a slight decrease at IMEP = 0.3 MPa. But locally high soot concentration regions increased.
机译:虽然废气再循环(EGR)是抑制氮氧化物(NOx)排放的常见方法,但它对内燃机的烟灰排放和热效率产生了一些负面影响。 我们调查了环境氧浓度对发动机性能,燃烧特性以及使用具有内窥镜可视化系统的四缸柴油机的发动机的影响。 为了估计火焰温度和烟灰分布,我们使用后处理程序分析了这些图像。 实验结果表明,对氧浓度的降低的氧浓度相比,图像中的火焰的发光度降低。 火焰温度分布也显示出类似的行为。 随着氧气浓度降低,IMEP = 0.13MPa的烟灰分布面积显着降低,并且IMEP = 0.3MPa仅略有降低。 但局部高烟灰浓度区域增加。

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