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Analysis of the particle size distribution in the cylinder of a common-rail DI diesel engine during combustion and expansion

机译:燃烧与膨胀过程中共轨DI柴油发动机缸中粒度分布的分析

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In the recent years diesel engine developers and manufacturers achieved a great progress in reducing the most important diesel engine pollutants, NO{sub}x and particulates. But nevertheless big efforts in diesel engine development are necessary to meet with the more stringent future emission regulations. To improve the knowledge about particle formation and emission an insight in the cylinder is necessary. By using the fast gas sampling technique samples from the cylinder were taken as a function of crank angle and analyzed regarding the soot particle size distribution and the particle mass. The particle size distribution was measured by a conventional SMPS. Under steady-state conditions the influence of aromatic and oxygen content in the fuel on in-cylinder particle size distribution and particle mass inside a modern 4V-CR-DI-diesel-engine were determined. After injection and ignition, mainly small soot particles were formed which grow and in the later combustion phase coagulate. The soot is formed very rapidly in the first combustion phase. After that soot particle oxidation takes place. In the first oxidation phase mostly the larger particles were oxidized. In the later expansion phase all soot particles were oxidized at nearly equal rate with a tendency of higher oxidation quantity for larger particles. The particle size distribution at the end of the expansion phase is similar to the tailpipe particle size distribution. No influence of the fuel composition on the in-cylinder and tailpipe particle size distribution was found.
机译:在近年来,柴油发动机开发商和制造商在减少最重要的柴油发动机污染物,没有{Sub} X和颗粒中取得了巨大进展。然而,柴油发动机开发的大努力是满足更严格的未来排放法规所必需的。为了提高关于粒子形成和发射的知识,是必要的汽缸的洞察力。通过使用来自气缸的快速气体采样技术,作为曲柄角的函数,并分析烟灰粒度分布和颗粒质量。粒度分布通过常规SMPS测量。在稳态条件下,确定了诸如现代4V-CR-DI柴油发动机内圆柱粒度分布和粒度燃料中芳香和氧含量的影响。注射和点火后,主要形成小的烟灰颗粒,其生长和在后来的燃烧相凝结中。在第一燃烧阶段中迅速地形成烟灰。在发生烟灰粒子氧化之后。在第一氧化阶段中,大多数较大的颗粒被氧化。在后期的膨胀阶段,所有烟灰颗粒以几乎相等的速率氧化,具有较大颗粒的较高氧化量的趋势。膨胀阶段结束时的粒度分布类似于尾管粒度分布。没有发现燃料组合物对圆柱体和尾管粒度分布的影响。

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