Experimental Investigations on Fuel Spray and Impingement for Gasoline Direct Injection Engines

Hongliang Luo
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Abstract

Spray-wall impingement is a widespread phenomenon applied in many fields, including spray-wall cooling system, spray coating process and fuel spray and atomization in internal combustion engines. In direct-injection spark ignition (DISI), it is difficult to avoid the fuel film on the piston head and cylinder surfaces. The wet wall caused by impingement affects the air-fuel mixture formation process, which finally influence the subsequent combustion efficiency and performance. Therefore, the fuel spray and impingement under gasoline engine-like conditions were characterized. Mie scattering technique was applied to visualize the spray evolution and impingement processes in a high-pressure and high-temperature constant chamber. Meanwhile, the adhered fuel film on the wall was measured by refractive index matching (RIM) under non-evaporation and evaporation conditions considering the effects of different injection pressures, ambient pressures and ambient temperatures. Additionally, the fuel film formation and evaporation evolution models were proposed with the help of these mechanisms.
汽油直喷发动机燃油喷射与撞击实验研究
喷壁碰撞是一种广泛存在的现象,在内燃机喷壁冷却系统、喷涂工艺、燃油喷雾雾化等领域都有广泛的应用。在直喷式火花点火(DISI)中,很难避免活塞头和汽缸表面的燃油膜。撞击产生的湿壁影响空燃混合气的形成过程,最终影响后续的燃烧效率和性能。因此,对类似汽油机工况下的燃油喷射和撞击进行了表征。采用Mie散射技术对高压高温恒温室中喷射过程和撞击过程进行了可视化分析。同时,在考虑不同喷射压力、环境压力和环境温度影响的情况下,采用折射率匹配(RIM)方法测量了非蒸发和蒸发工况下燃油壁面粘附膜的形貌。并利用这些机理建立了燃料膜的形成和蒸发演化模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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