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首页> 外文期刊>SAE International Journal of Engines >In-Cylinder Mechanisms of Soot Reduction by Close-Coupled Post-Injections as Revealed by Imaging of Soot Luminosity and Planar Laser-Induced Soot Incandescence in a Heavy-Duty Diesel Engine
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In-Cylinder Mechanisms of Soot Reduction by Close-Coupled Post-Injections as Revealed by Imaging of Soot Luminosity and Planar Laser-Induced Soot Incandescence in a Heavy-Duty Diesel Engine

机译:重型柴油机中烟尘光度成像和平面激光诱导的烟尘白炽成像揭示了通过紧密耦合后喷射减少烟灰的缸内机理

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摘要

Post injections have been shown to reduce engine-out soot emissions in a variety of engine architectures and at a range of operating points. In this study, measurements of the engine-out soot from a heavy-duty optical diesel engine have conclusively shown that interaction between the post-injection jet and soot from the main injection must be, at least in part, responsible for the reduction in engine-out soot. Extensive measurements of the spatial and temporal evolution of soot using high-speed imaging of soot natural luminosity (soot-NL) and planar-laser induced incandescence of soot (soot-PLII) at four vertical elevations in the piston bowl at a range of crank angle timings provide definitive optical evidence of these interactions. The soot-PLII images provide some of the most conclusive evidence to date that the addition of a post injection dramatically changes the topology and quantity of in-cylinder soot. As the post jet penetrates toward the bowl wall, it carves out regions from the main-injection soot structures, either through displacement of the soot or through rapid and progressive oxidation of the soot. Later in the cycle, the regions of main-injection soot on either side of the jet centerline, clearly present in the main-injection-only case, have all but disappeared when the post-injection is added - only the soot in the post-injection pathway remains. Evidence of this apparent late-cycle oxidation of main-injection soot appears in both the soot-PLII and soot-NL images, providing substantial support for the mixing mechanism of soot reduction with post injections. Implications of these findings and future work are also discussed.
机译:事实证明,后喷射可以减少各种发动机结构和一系列工作点的发动机排出的烟尘排放。在这项研究中,对重型光学柴油机的发动机排出的烟灰的测量已明确表明,后喷射流与主喷射的烟灰之间的相互作用至少必须部分负责发动机的减少。烟灰。使用高速成像的烟灰自然光度(soot-NL)和平面激光诱导的烟灰白炽度(soot-PLII)在活塞范围内的四个垂直高度上对烟灰的时空分布进行了广泛的测量角度定时为这些相互作用提供了确定的光学证据。迄今为止,烟灰-PLII图像提供了一些最确凿的证据,即添加后注入会极大地改变缸内烟灰的拓扑和数量。当后喷射流向碗壁渗透时,它会通过烟灰的移位或烟灰的快速渐进氧化而从主喷射烟灰结构中切出区域。在循环的后期,喷射中心线两侧的主喷射烟灰区域(仅在仅主喷射的情况下明显存在)在添加后喷射后几乎消失了-仅在后喷射中注射途径仍然存在。主喷射烟灰的这种明显的后期循环氧化的证据出现在烟灰-PLII和烟灰-NL图像中,这为后期喷射后烟灰还原的混合机理提供了实质性支持。还讨论了这些发现和未来工作的含义。

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