the influence of water vapor injection on soot formation during liquid fuel pyrolysis is investigated.
考察了水蒸气的加入对液体燃料高温分解时碳黑形成的影响。
in this paper, we illustrate two mechanisms of soot formation including the one in premixed ethylene flames and the other on in coal combustion in order to make a detailed review on soot formation.
从两方面论述了碳黑的生成机理:气体火焰中碳黑的生成模型和煤燃烧过程中碳黑的生成模型,从而对碳黑的生成机理作了一个详细的综述。
the soot formation in diesel engine「s burning not only badly pollutes the environment, but also brings harm to human」s health.
柴油机燃烧过程中产生的碳烟严重污染了环境,危害着人类健康。
few works has been mentioned for soot formation derived from lump-coal combustion in stoker-fired boiler.
研究层燃炉煤燃烧的碳黑形成机理,对减少污染物排放和提高燃烧效率有重要意义。
researching the soot formation and oxidation has become one of important and hot question about the emission controlling of the diesel engines.
研究碳烟的生成和氧化机理,已成为控制柴油机排放的重点和热点之一。
on the base of the mechanism mentioned above, the characteristics of soot formation and oxidation in high temperature air combustion were analyzed.
据此,分析了高温空气燃烧过程中烟炱的生成与氧化过程特性,指出氧化剂的浓度分布是抑制nox生成和烟炱排放的关键因素;
in this paper the mechanism of the soot formation and oxidation in the conventional combustion were summarized. the effect of flow field on soot formation and emission was introduced.
总结了国内外学者有关一般燃烧过程中烟炱的生成与氧化机理的研究成果,并介绍了流场结构对烟炱生成和排放的影响。
soot formation can be restrained hence the emission of soot can be decreased with the increased injection advance angle.
增大供油提前角可以减少燃烧过程前期的碳粒生成量,进而降低碳粒排放。
an improved phenomenological soot model coupled with a reduced n-heptane chemical mechanism was implemented into kiva-3v code to describe soot formation and oxidation processes in diesel combustion.
将改进的碳烟半经验模型和简化正庚烷的化学反应机理纳入kiva-3v程序中,以描述柴油燃烧过程中碳烟的生成和氧化历程。
under this condition, the spray during ignition and combustion and soot formation are far different with those when the ignition occurs before injection stops.
停喷后着火和停喷前着火相比,其着火瞬间的喷雾场和此后的燃烧场、碳粒场的变化历程有明显不同。
still, there are many reasons to pursue such studies, he said. electric fields can help reduce soot formation and pollutant emissions from flames.
仍有许多原因推动这些研究,他说。电场可助于降低火焰中烟尘的形成以及污染物的排放。