首页> 外文期刊>SAE International Journal of Fuels and Lubricants >The Effect of Fuel Temperature on the Ethanol Direct Injection Spray Characteristics of a Multi-hole Injector
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The Effect of Fuel Temperature on the Ethanol Direct Injection Spray Characteristics of a Multi-hole Injector

机译:燃料温度对多孔喷油器乙醇直喷特性的影响

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摘要

Ethanol direct injection (EDI) is a new technology to use ethanol fuel more efficiently in spark ignition engines. Fuel temperature is one of the key factors which determine the evaporation process of liquid fuel spray, and consequently influence the combustion and emission generation of the engine. To better understand the mixture formation process of the EDI spray and provide experimental data for engine modelling, experiments were conducted in a constant volume chamber in engine-like conditions. The high speed Shadowgraphy imaging technique was used to capture the ethanol spray behaviours. The experiments covered a wide range of fuel temperature, ranged from 275 K (non-evaporating) to 400 K (flash-boiling). Particularly the transition of the ethanol spray from normal-evaporating to flash-boiling was investigated. The temporal Shadowgraphy spray images, spray tip penetration, angle and projected area were applied to evaluate the evaporation of EDI spray under different fuel temperature conditions. The results showed that the non-evaporating spray's characteristics were similar to the normal-evaporating sprays' in terms of spray tip penetration, angle and projected area. When the fuel temperature increased from 350 K to flash-boiling spray, the spray angle and projected area reduced significantly, but the spray tip penetration increased. Increasing the fuel temperature from 275 K to 325 K did not cause significant increase of the evaporating rate, but with further increase of the fuel temperature, the ethanol spray's evaporation became faster. The transition temperature at which the ethanol spray collapsed at atmospheric pressure was between 355 K and 360 K.
机译:乙醇直喷(EDI)是一项新技术,可在火花点火发动机中更有效地使用乙醇燃料。燃料温度是决定液体燃料喷雾的蒸发过程并因此影响发动机燃烧和排放产生的关键因素之一。为了更好地理解EDI喷雾的混合物形成过程并为发动机建模提供实验数据,在类似发动机的恒定容积室内进行了实验。高速Shadowgraphy成像技术用于捕获乙醇喷雾行为。实验涵盖了广泛的燃料温度范围,范围从275 K(非蒸发)到400 K(闪蒸)。特别地,研究了乙醇喷雾从正常蒸发到闪蒸的转变。应用时间Shadowgraphy喷雾图像,喷嘴尖端穿透力,角度和投影面积来评估在不同燃料温度条件下EDI喷雾的蒸发。结果表明,非蒸发喷雾的特性与常规蒸发喷雾的喷嘴尖端渗透,角度和投影面积相似。当燃料温度从350 K增加到闪蒸喷雾时,喷雾角度和投影面积显着减小,但喷雾嘴的穿透力增加。燃料温度从275 K升高到325 K并没有引起蒸发速率的显着增加,但是随着燃料温度的进一步升高,乙醇喷雾的蒸发变得更快。乙醇喷雾在大气压下崩溃的转变温度为355 K至360 K.

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