首页> 外文期刊>Atomization and Sprays: Journal of the International Institutes for Liquid Atomization and Spray Systems >EXPERIMENTAL INVESTIGATION OF SPRAY CHARACTERISTICS OF DIESEL-METHANOL-WATER EMULSION
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EXPERIMENTAL INVESTIGATION OF SPRAY CHARACTERISTICS OF DIESEL-METHANOL-WATER EMULSION

机译:柴油-甲醇-水乳化液喷雾特性的实验研究

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The spray characteristics were investigated for the Diesel-methanol-water (DMW) emulsion and commercial Diesel fuel. Droplet diameters and droplet size distributions were measured by Malvern particle size analyzer and spray tip penetration, and cone angles were acquired using the high-speed CCD digital camera. All experiments were conducted by employing a high-pressure fuel injection system under room temperature and pressure. The viscosity property of the experimental liquid was measured by the rotary viscometer to ensure the influence of the liquid physical property on spray characteristics. The changes of the emulsion physical properties, including the dispersed phase content and the emulsifier, caused significant changes of the spray characteristics. It was found that the curve of droplet size distribution of DMW emulsion and Diesel first increased then decreased with the increase of the nominal diameter, but the distribution range of Diesel was narrower than that of DMW emulsion. Furthermore, Sauter mean diameter and other representative drop diameters decreased with the increase of injection pressure, and a higher injection pressure produced finer spray droplets and better distribution uniformity. Under the same conditions, the spray tip penetration and cone angle of DMW emulsion were smaller than that of Diesel, and they decreased with the increase of the dispersed phase content. Meanwhile, a higher viscosity and lower HLB of the emulsifier had a larger atomized particle size and a smaller spray tip penetration and spray cone angle. However, the variation of spray characteristics of different fuels became smaller with increasing injection pressure.
机译:研究了柴油-甲醇-水(DMW)乳液和商用柴油的喷雾特性。用Malvern粒度分析仪测量液滴直径和液滴尺寸分布,并测量喷嘴的穿透力,并使用高速CCD数码相机获取锥角。所有实验都是通过在室温和压力下采用高压燃油喷射系统进行的。通过旋转粘度计测量实验液体的粘度性质,以确保液体物理性质对喷雾特性的影响。乳液物理性质的变化,包括分散相含量和乳化剂,引起喷雾特性的显着变化。研究发现,随着公称直径的增大,DMW乳液和柴油的液滴尺寸分布曲线先增大后减小,但柴油的分布范围比DMW乳液窄。此外,索特平均直径和其他代表性液滴直径随着注射压力的增加而减小,并且较高的注射压力产生更细的喷雾液滴和更好的分布均匀性。在相同条件下,DMW乳液的喷头渗透率和锥角均小于柴油,随着分散相含量的增加而降低。同时,乳化剂的较高粘度和较低的HLB具有较大的雾化粒径和较小的喷嘴尖端穿透度和喷嘴锥角。然而,随着喷射压力的增加,不同燃料的喷雾特性的变化变得更小。

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