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An Experimental Study on High Pressure Pulsed Jets for DI Gas Engine Using Planar Laser-Induced Fluorescence

机译:使用平面激光诱导荧光的DI燃气发动机高压脉冲喷射的实验研究

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摘要

Compressed natural gas direct-injection (CNG-DI) engines based on diesel cycle combustion system with pilot ignition have ability to achieve high thermal efficiency and low emissions. Generally, underexpanded jets can be formed when the high pressure natural gas is injected into the combustion chamber. In such conditions, shock wave phenomena are the typical behaviors of the jet, which can significantly influence the downstream flow structure and turbulent mixing. In the present study, the characteristics of high-pressure transient jets were investigated using planar laser-induced fluorescence (PLIF) of acetone as a fuel tracer. The evolution of the pulsed jet shows that there are three typical jet flow patterns (subsonic, moderately underexpanded, and highly underexpanded) during the injection. The full injection process of high-pressure pulsed jets is well described with the help of these shock wave structures. The effects of the injection pressure and shock waves on the jet structures and local mixing activity are highlighted by means of scalar dissipation. Furthermore, the jet tip penetration and jet velocity are analyzed under different injection conditions.
机译:基于柴油循环燃烧系统的压缩天然气直喷(CNG-DI)发动机具有试点点火的能力,具有实现高热效率和低排放的能力。通常,当高压天然气注入燃烧室时,可以形成Underexpanded喷射。在这种情况下,冲击波现象是喷射的典型行为,这可以显着影响下游流动结构和湍流混合。在本研究中,使用丙酮作为燃料示踪剂的平面激光诱导的荧光(PLIF)研究了高压瞬态射流的特性。脉冲射流的演变表明,在注射期间存在三种典型的射流模式(亚音速,中间曝光不足和高度悬寸率)。借助于这些冲击波结构很好地描述了高压脉冲喷射的全喷射过程。通过标量耗散突出了喷射压力和冲击波对喷射结构和局部混合活性的影响。此外,在不同的注射条件下分析喷射尖端穿透和喷射速度。

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