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Study on the combustion characteristics and ignition limits of the methane homogeneous charge compression ignition with hydrogen addition in micro-power devices

机译:微功率装置加氢甲烷均质充量压缩点火的燃烧特性和点火极限研究

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摘要

Based on the single process of free piston in micro HCCI free piston power device, the parameters such as the combustion characteristics of methane hydrogenation homogeneous charge compression ignition, the free piston movement process, the ignition time of the mixture gas, the changes of temperature and pressure in microcombustion chamber, and the power capability of the device are compared and analyzed by combining the experiment method with the numerical simulation method. The experimental results are basically consistent with the numerical results. The research shows: when the initial equivalence ratio is 0.5, the blending of hydrogen can widen the ignition limit of mixed fuel, advance the ignition time of the mixture gas and reduce the starting energy needed for the device. At the same time, adding hydrogen to methane will reduce the maximum temperature and the maximum pressure of the micro-combustion chamber, make the burning flame more stable and alleviate the detonation phenomenon of the combustion of mixture gas. However, the addition of hydrogen to methane will result in the decrease of the final speed of the free piston, the increase of the time required for a single stroke, the decrease of the power capacity of the device, and the indicator thermal efficiency is also reduced. Only the proper hydrogen blending ratio can be used to expand the combustion boundary and improve the reliability of the combustion process while ensuring the capability of the micro power device.
机译:基于微型HCCI自由活塞动力装置中自由活塞的单一过程,甲烷加氢均质充量压缩点火的燃烧特性,自由活塞运动过程,混合气体的点火时间,温度和温度的变化等参数通过将实验方法与数值模拟方法相结合,对微燃烧室的压力,装置的功率进行了比较和分析。实验结果与数值结果基本吻合。研究表明:当初始当量比为0.5时,氢的掺混可以扩大混合燃料的着火极限,延长混合气的着火时间,并降低装置所需的启动能量。同时,向甲烷中添加氢气会降低微燃烧室的最高温度和最高压力,使燃烧火焰更稳定,并减轻混合气燃烧的爆炸现象。但是,将氢气添加到甲烷中会导致自由活塞的最终速度降低,单个冲程所需的时间增加,设备的功率容量降低以及指示器的热效率也降低。减少。只有适当的氢混合比才能用于扩展燃烧边界并提高燃烧过程的可靠性,同时确保微功率设备的性能。

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