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Optimization of Multiple Injection Strategies to Improve BSFC Performance of a Common Rail Direct Injection Diesel Engine

机译:优化多种注射策略,提高公共铁路直喷柴油发动机的BSFC性能

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Present stringent emissions norms; global fossil fuel energy scenario and competitive automotive market has driven many researches on diesel engine combustion in both academic and industry level. This work is an effort to improve the fuel economy without compromising emissions level of typical six cylinders inline CRDI diesel engine using optimized multiple injection strategy. There was some unusual nature of BSFC (Brake specific fuel consumption) observed on such typical engine. Also, Torque curve was not up to the mark for better drivability. This engine is equipped with most familiar in cylinder NOx reduction device namely EGR and multiple injections. There were few experiments conducted on same engine to optimize the BSFC using different multi injection strategies in line to marginal change of injection timing with respect to crank angle. Total exercise was done following partial Design of Experiments (DOE). EGR % has kept unaltered. The effects of multiple injection strategies (Pilot-main- After [PMA] and Pilot 2- Pilot - main- After [EPMA]) have been analyzed through this work. The secondary objective of this work is to understand the relationship between injection strategies, BSFC, other performances (torque, Power) and emissions. This study shows significant improvement on BSFC and Torque without affecting other performance parameters and Emissions.
机译:目前严格的排放规范;全球化石燃料能源场景和竞争激烈的汽车市场在学术界和工业层面推动了许多研究柴油发动机燃烧研究。这项工作是一种努力提高燃油经济性,而不会使用优化的多次喷射策略在没有损害典型的六缸柴油机的排放水平。在这种典型发动机上观察到BSFC(制动器特定燃料消耗)存在一些不寻常的性质。而且,扭矩曲线没有达到标记以获得更好的驾驶性能。该发动机配备了最熟悉的圆柱NOx缩减装置,即EGR和多次喷射。在相同的发动机上进行了很少的实验,以优化使用不同的多喷射策略的BSFC,以曲线角度的喷射正时的边缘变化。在部分实验设计(DOE)之后进行总练习。 EGR%一直保持不变。通过这项工作分析了多种注射策略的影响(飞行员 - 主要 - [PMA]和PILOT 2- MAIN-在[EPMA]之后)。这项工作的二级目标是了解注射策略,BSFC,其他性能(扭矩,电力)和排放之间的关系。该研究显示了BSFC和扭矩的显着改善,而不会影响其他性能参数和排放。

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