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Spray Formation from Spark-Eroded and Laser-Drilled Injectors for DISI Engines with Gasoline and Alcohol Fuels

机译:用于汽油和酒精燃料的DIsI发动机的火花侵蚀和激光钻孔喷射器的喷射形成

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摘要

Copyright © 2014 SAE International.One of the latest advancements in injector technology is laser drilling of the nozzle holes. In this context, the spray formation and atomisation characteristics of gasoline, ethanol and 1-butanol were investigated for a 7-hole spark eroded (SE) injector and its ‘direct replacement’ Laser-drilled (LD) injector using optical techniques. In the first step of the optical investigation, high-speed spray imaging was performed in a quiescent injection chamber with global illumination using diffused Laser light. The images were statistically analyzed to obtain spray penetration, spray tip velocity and spray ‘cone’ angles. Furthermore, droplet sizing was undertaken using Phase Doppler Anemometry (PDA). A single spray plume was isolated for this analysis and measurements were obtained across the plume at a fixed distance from the nozzle exit. The droplet measurements were grouped into bins and maps were created showing droplet sizes and velocities against time and position during and post injection. All tests were performed at 120 bar fuel pressure, two injection chamber ‘back’ pressures (0.5 bar and 1 bar) and two injector temperatures (20 °C and 80 °C), to examine effects relevant to typical engine operating conditions with early intake stroke injection strategies, including fuel flash boiling.
机译:版权所有©2014 SAE International。喷油嘴技术的最新进展之一是对喷嘴孔进行激光打孔。在这种情况下,使用光学技术研究了7孔火花腐蚀(SE)喷油器及其“直接替代”激光钻孔(LD)喷油器的汽油,乙醇和1-丁醇的喷雾形成和雾化特性。在光学研究的第一步中,在静态注入室中使用扩散激光在全局照明下进行高速喷雾成像。对图像进行统计分析以获得喷雾渗透,喷雾尖端速度和喷雾“锥角”。此外,使用相位多普勒风速仪(PDA)进行液滴定径。分离出单个喷雾羽用于该分析,并在距喷嘴出口固定距离的整个羽上获得测量值。将液滴测量值分组到箱中,并创建地图,显示液滴大小和速度相对于注入期间和注入后的时间和位置。所有测试均在120 bar燃油压力,两个喷射室“背”压(0.5 bar和1 bar)和两个喷射器温度(20°C和80°C)下进行,以检查与早期进气的典型发动机工况相关的影响中风喷射策略包括燃油闪蒸。

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