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SPRAY/WALL INTERACTION INFLUENCES ON THE DIESEL ENGINE MIXTURE FORMATION PROCESS INVESTIGATED BY SPONTANEOUS RAMAN SCATTERING

机译:喷雾/壁相互作用对自发拉曼散射研究的柴油发动机混合物形成过程的影响

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A main topic for the further development of direct injection diesel engines is the optimization of mixture formation, as all subsequent processes like ignition, combustion, and pollutant formation are mainly influenced by the local air/fuel ratio inside the cylinder. Especially for passenger-car engines, the interaction between spray and combustion chamber walls is an important issue for mixture formation. Therefore, this interaction was the subject of the investigations described. The investigations were carried out in a heatable high-pressure, high-temperature chamber under typical diesel engine conditions of 450 °C temperature and 50 bar pressure. A passenger-car common rail system was used as injection system which could be equipped with two different six-hole nozzles, both with common rail specific seat geometry, mini sac hole geometry, and double needle guide. In order to allow a detailed evaluation of the quality of mixture formation, a measurement technique based on spontaneous Raman scattering was applied, enabling quantitative measurements of the local air/fuel ratio along a line of a few millimeters. The careful adaptation of the optical setup made it possible to separate the weak Raman signals from background contributions, and this allowed a distinct determination of air and fuel density in the vapor phase. The measurements were carried out at a distance of 2 mm from the wall, directly above the impact location of the spray jet, as well as inside the wall jet region. The results obtained indicate the improvement of the mixture formation inside the wall jet as-consequence of the increased air entrainment. Additionally, for the investigation of the temporal development of mixture formation, the influences of injection pressure, nozzle orifice geometry, and wall surface temperature on mixture formation have been studied.
机译:用于进一步发展的直喷式柴油发动机的主要课题是混合物形成的优化,因为当圆柱内的局部空气/燃料比的所有后续方法都受到圆柱内的局部空气/燃料比的所有内容。特别是对于乘用车发动机,喷雾和燃烧室壁之间的相互作用是混合形成的重要问题。因此,这种互动是描述的调查的主题。在450℃温度和50巴压力的典型柴油发动机条件下,在可加热的高压,高温室中进行研究。乘用车共轨系统用作喷射系统,该喷射系统可配备两个不同的六孔喷嘴,均具有共轨特定座椅几何形状,迷你囊孔几何形状和双针头导轨。为了允许详细评估混合物形成的质量,施加基于自发拉曼散射的测量技术,从而使沿几毫米的线的局部空气/燃料比的定量测量。仔细适应光学设置使得可以将弱拉曼信号与背景贡献分开,并且这允许在气相中不同地确定空气和燃料密度。测量在距离壁的距离为2mm的距离,直接在喷射射流的冲击位置,以及壁射流区域内部。获得的结果表明,改善了壁射流的混合物形成的结果,其增加的空气夹带的结果。另外,为了调查混合物形成的时间发育,研究了注射压力,喷嘴孔或壁表面温度对混合物形成的影响。

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