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Effects of high ignition energy on lean combustion characteristics of natural gas using an optical engine with a high compression ratio

机译:高压缩比使用光学发动机的高点火能量对天然气贫燃烧特性的影响

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Natural gas engines often suffer from slow-burning rate and large cyclic variations, which significantly affects engine performance and thermal efficiency. In this study, using an optical spark-ignition engine with a high compression ratio, the role of high ignition energy in lean combustion characteristics of natural gas was investigated. Synchronization measurement of in-cylinder pressure and visualization images were performed to analyze the correlations of engine performance and combustion characteristics. The results show that elevating ignition energy can improve combustion instability and thermal efficiency, manifesting more concentrated heat release and greater influences on the combustion duration from 10% to 50% in burned mass fraction than that of 50%e90% range. The combustion visualizations show that ignition energy mainly affects initial flame kernel formation and early flame development, and improved flame speed and combustion instability can be observed even when excess air coefficient reaches 1.4 at sufficiently high ignition energy. Furthermore, an empirical criterion based on burned mass fraction and combustion visualizations was adopted to quantify early flame development. The shortage of ignition delay time and the acceleration of initial flame propagation are observed with the increases of ignition energy, which leads to lower cyclic variations and a faster burning rate at the early combustion stage.(c) 2021 Elsevier Ltd. All rights reserved.
机译:天然气发动机经常遭受速度慢速度和大的循环变化,这显着影响发动机性能和热效率。在该研究中,使用具有高压缩比的光学火花点火发动机,研究了高点火能量在天然气贫燃烧特性中的作用。进行缸内压力和可视化图像的同步测量,以分析发动机性能和燃烧特性的相关性。结果表明,升高点火能量可以提高燃烧不稳定性和热效率,表现出更浓缩的热释放,燃烧持续时间从燃烧质量分数的10%〜50%的燃烧持续时间更大的影响比50%E90%范围。燃烧可视化表明,点火能量主要影响初始火焰核形成和早期火焰显影,并且即使在足够高的点火能量下达到1.4时,也可以观察到改善的火焰速度和燃烧不稳定性。此外,采用了基于烧伤质量分数和燃烧可视化的经验标准来量化早期火焰发育。点火延迟时间的短缺和初始火焰传播的加速度随着点火能量的增加,导致早期燃烧阶段的循环变化和更快的燃烧速率导致更低。(c)2021 elestvier有限公司保留所有权利。

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