首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Impact of nozzle holes configuration on fuel spray, wall impingement and NO_x emission of a diesel engine for biodiesel-diesel blend (B20)
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Impact of nozzle holes configuration on fuel spray, wall impingement and NO_x emission of a diesel engine for biodiesel-diesel blend (B20)

机译:喷嘴孔构型对生物柴油-柴油共混物(B20)柴油机的燃料喷雾,壁撞击和NO_x排放的影响

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摘要

A diesel engine fueled with biodiesel-diesel blend (B20) decreases CO, HC and smoke emissions drastically. However, NO_x emission and chance of wall impingement increased significantly leading to the problems of the diesel engine for use of the biodiesel-diesel blend. Hence, the study is aimed at reduction in NO_x emission of the engine at source level and chance of wall impingement using the modified nozzle configuration (5 (base) and 6 (modified) holes). NO_x emission of the engine for B20 fuel decreased from 7.4 g/kW-hr with the base nozzle configuration to 6.6 g/kW-hr with modified nozzle configuration due to reduction in in-cylinder temperature, retarding in dynamic injection timing, reduction in spray penetration distance. The spray penetration distance for B20 with the modified nozzle configuration is lesser resulting in less chance of wall impingement resulting in solution to the main durable issues of diesel engines for B20. The spray characteristics including sauter mean diameter, penetration distance and air entrainment are analyzed for B20 fuel in detail. The NO_x emission is well correlated with spray penetration distance. The modification of nozzle configuration (number of holes) is a solution to reduce NO_x emission of biodiesel fueled diesel engine at source level and also the chance of wall impingement with tangible benefits of HC, CO, smoke and BSEC reduction.
机译:装有生物柴油-柴油混合物(B20)的柴油发动机可大大减少CO,HC和烟气排放。但是,NO_x排放和壁撞击的机会显着增加,从而导致柴油发动机存在使用生物柴油-柴油混合物的问题。因此,该研究旨在通过使用改进的喷嘴配置(5个(基本)孔和6个(改进的)孔)在源头水平上减少发动机的NO_x排放并减少壁撞击的机会。由于缸内温度降低,动态喷射正时延迟,喷雾减少,B20燃料发动机的NO_x排放量从采用基本喷嘴配置的7.4 g / kW-hr减少到采用改进喷嘴配置的6.6 g / kW-hr的情况穿透距离。具有改进的喷嘴配置的B20的喷雾渗透距离较小,导致壁撞击的可能性较小,从而解决了B20柴油机的主要耐用性问题。详细分析了B20燃料的喷雾特性,包括苏特平均直径,穿透距离和空气夹带。 NO_x排放与喷雾渗透距离密切相关。修改喷嘴配置(孔数)是一种从源头上减少生物柴油燃料柴油机NO_x排放的解决方案,并且还可以减少壁撞击的机会,并显着减少HC,CO,烟气和BSEC。

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