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Combustion analysis of a SI engine with stratified and homogeneous pre-chamber ignition system using ethanol and hydrogen

机译:使用乙醇和氢气和氢气具有分层和均相预腔点火系统的SI发动机的燃烧分析

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摘要

Environmental regulations have been increasingly demanding reduction of fossil fuel consumption and emission in industrial activities and in the transportation sector. In this context, the use of biofuels such as ethanol has become increasingly attractive. With similar purpose, several technologies have been explored, among which stands out the pre-chamber ignition system. In this context, this paper aims to evaluate the viability of pre-chamber system use in a commercial SI engine, considering combustion and emission analysis of both homogeneous and stratified with hydrogen injection pre-chamber systems. To conduct this research, a flex-fuel engine under stoichiometric conditions and ethanol as fuel in main chamber was used. In this work it was identified that the use of pre-chambers can reduce the combustion time by up to 20%, increase the thermal efficiency by up to 5% and reduce CO and NOx emissions by up to 12% and 33% respectively, when compared to the baseline ignition system, without significant changes in the combustion efficiency. Moreover, the research proves that output power in stoichiometric mixtures can be increased with the use of both pre-chamber ignition systems.
机译:环境法规越来越需要降低工业活动和运输部门的化石燃料消耗和排放。在这种情况下,使用诸如乙醇的生物燃料已经越来越有吸引力。采用类似的目的,已经探索了几种技术,其中包括预腔点火系统。在这种情况下,本文旨在评估商业Si发动机中预室系统的可行性,考虑到均匀和分层与氢注射预室系统的燃烧和排放分析。为了进行这项研究,使用了在化学计量条件下的柔性燃料发动机和主室中的燃料。在这项工作中,它被认为使用预腔可以将燃烧时间降低到20%,增加了高达5%的热效率,并将CO和NOX排放量减少了高达12%和33%与基线点火系统相比,无明显变化的燃烧效率。此外,该研究证明,通过使用两种预腔火点火系统,可以增加化学计量混合物中的输出功率。

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