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CFD Prediction of Combustion on Direct Injection Diesel Engine with Two Different Combustion Chamber Configurations

机译:两种不同燃烧室配置直喷柴油机燃烧的CFD预测

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Direct injection diesel engines are used in both light duty and heavy duty vehicles because of higher thermal efficiency compared to SI engines. However, due to only short time available for fuel-air mixing, combustion process depends on proper mixing. As a result, DI Diesel engine emits more NO_x and soot into the atmosphere. Therefore, to achieve better combustion with less emission and also to accelerate the fuel-air mixing to improve the combustion, appropriate design of combustion chamber is crucial. Hence, in this work a study has been carried out using CFD to evaluate the effect of combustion chamber configuration on Diesel combustion with two different piston bowls. The two different piston configurations considered in this study are centre bowl on flat piston and pentroof offset bowl piston. Combustion pressure, heat release rate, flame structure, fuel injection on flow field, spray structure, droplet diameter, droplet velocity, NO_x and soot emissions have been calculated and the best piston configuration has been arrived. As combustion studies could not be validated, the flow field studies are validated. From this study, it is concluded that pentroof offset bowl piston configuration is better.
机译:与SI发动机相比,由于较高的热效率,直喷式柴油发动机用于轻型和重型车辆。然而,由于仅可用于燃料 - 空气混合的短时间,燃烧过程取决于适当的混合。结果,DI柴油发动机将更多NO_X和烟灰发出到大气中。因此,为了实现更好的发射燃烧,也加速燃料 - 空气混合以改善燃烧,适当设计的燃烧室是至关重要的。因此,在这项工作中,使用CFD进行了研究,以评估燃烧室配置与两个不同的活塞碗柴油燃烧的效果。本研究中考虑的两种不同的活塞配置是平面活塞和偏翼胶碗活塞的中心碗。燃烧压力,热释放速率,火焰结构,燃料喷射对流场,喷雾结构,液滴直径,液滴速度,NO_X和烟灰排放,最佳的活塞配置已经到达。由于无法验证燃烧研究,验证了流场研究。从这项研究开始,得出结论,偏偏心弯碗活塞配置更好。

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