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Full Cycle Cold Flow Analysis of the Effect of Twin Swirl Combustion Chamber Design in a Diesel Engine

机译:柴油机双旋流燃烧室设计影响的全循环冷流分析

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New designs and adaptation methods are experimented to ensure compliance to ever increasing emissions and efficiency requirements of modern diesel engines. Piston head structure which influences the mixing rate and timing of the fuel within in the combustion chamber is known to enable increase in combustion efficiency and thus lower emission rates. In this paper, computation analysis of flow within a diesel engine cylinder with a twin swirl combustion chamber design throughout a full cycle is presented. The results obtained indicate that the effect of the twin swirl combustion chamber on the cold flow conditions is noteworthy and further analysis together with experiments may reveal information that may prove to be useful in further new designs.
机译:实验了新的设计和适应方法,以确保符合现代柴油发动机不断增长的排放和效率要求。已知影响燃烧室内的燃料的混合速率和正时的活塞头结构能够提高燃烧效率并因此降低排放率。本文介绍了在整个循环中采用双涡旋燃烧室设计的柴油机气缸内流动的计算分析。获得的结果表明,双涡旋燃烧室对冷流条件的影响是值得注意的,并且进一步的分析以及实验可能揭示出可能被证明在进一步的新设计中有用的信息。

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