Study on promotion of lean combustion by oxygen enrichment using a rapid compression expansion machine

Kazuki Harada, S. Ando, Yuya Ito, Y. Kawasoe, Hideki Hashimoto, O. Moriue
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Abstract

While lean combustion in SI engine is one of the promising methods to increase the thermal efficiency and reduce the pollutant emissions, it causes instability of ignition and combustion due to the low burning velocity. Thus, we propose to increase the combustion intensity by incorporating oxygen enrichment with lean combustion. The objective of present study is to investigate the effects of oxygen enrichment on lean combustion behavior in SI engine. Premixed methane-air-oxygen mixture was combusted in a rapid compression expansion machine with varying their concentration. Experimental conditions were determined by identifying the conditions where the laminar burning velocity significantly changes by oxygen enrichment with 1-D simulation of premixed combustion. Histories of pressure were measured to evaluate heat release rate. Luminous flame was captured by a high-speed camera to observe the flame propagation. As a result, laminar burning velocity increased with oxygen concentration, which caused reduction of combustion period and enhancement of the indicated thermal efficiency. On the other hand, this trend was suppressed when the fuel concentration is lower than 6.85 %. In addition, when the fuel concentration is relatively large, flame propagation speed increased with increase in oxygen concentration, which can cause autoignition of end gas. NOx emission decreased or kept almost constant with increase in oxygen concentration, which might be due to the shortened combustion duration.
快速压缩膨胀机富氧促进贫燃烧的研究
发动机稀薄燃烧是提高发动机热效率和降低发动机污染物排放的一种很有前途的方法,但由于燃烧速度低,导致发动机点火和燃烧不稳定。因此,我们建议通过将贫燃烧与富氧结合来提高燃烧强度。本研究的目的是探讨富氧对内燃机稀薄燃烧行为的影响。采用不同浓度的甲烷-空气-氧气预混混合物在快速压缩膨胀机中燃烧。通过一维模拟预混合燃烧,通过富氧确定层流燃烧速度变化显著的条件,确定实验条件。测量压力史以评估热释放率。用高速摄像机捕捉发光火焰,观察火焰的传播。结果表明,层流燃烧速度随氧浓度的增加而增加,从而缩短了燃烧周期,提高了指示热效率。另一方面,当燃料浓度低于6.85%时,这一趋势被抑制。此外,当燃料浓度较大时,火焰的传播速度随着氧气浓度的增加而增加,这可能导致末端气体自燃。随着氧浓度的增加,NOx排放量减少或基本保持不变,这可能是由于燃烧时间缩短所致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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