A numerical investigation of the influence of ozone on combustion to improve the performance of spark ignition engines

IF 3.2 4区 工程技术 Q3 ENERGY & FUELS Energy Efficiency Pub Date : 2024-03-13 DOI:10.1007/s12053-024-10209-w
Marco D’Amato, Antonio Cantiani, Angelo Basso, Vinicio Magi, Annarita Viggiano
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Abstract

The aim of this work is to exploit the influence of using ozonized air to achieve stable and efficient combustion of lean mixtures in a gasoline-fuelled Spark-Ignition (SI) engine. The influence of ozone on the combustion of near-stoichiometric mixtures, which are typical of SI engines, has also been assessed. A Computational Fluid Dynamics (CFD) model has been employed to simulate compression, combustion, and expansion of a spark ignition, axisymmetric engine fuelled with iso-octane/air/ozone mixtures. The aim is to assess how ozone improves the engine performance under different engine speeds, ignition timings and equivalence ratios. The model has been validated against experimental data available in the literature. Parametric analyses have been carried out by considering three values of engine speeds (800, 1000 and 1200 rpm), three different ozone concentrations at Intake Valve Closure (IVC) (0, 100 and 200 ppm) and two equivalence ratios (0.9 and 0.7). The results show that ozone enables reactions in the Low Temperature Combustion (LTC) regime, modifies the mixture chemical composition and the auto-ignition tendency. Specifically, for all the cases under examination, the addition of ozone to the air/fuel mixture reduces the combustion duration, leading to an increase in terms of work output and a reduction of the specific fuel consumption. Moreover, the advantage of using ozone is greater for lean mixtures than for near-stoichiometric mixtures. Finally, for the near-stoichiometric cases, when the residence time of the mixture is high enough, auto-ignition occurs in the end gases.

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臭氧对燃烧影响的数值研究,以提高火花点火发动机的性能
这项工作的目的是利用臭氧空气的影响,在以汽油为燃料的火花点火(SI)发动机中实现贫油混合物的稳定高效燃烧。此外,还评估了臭氧对接近公称混合气(SI 发动机的典型特征)燃烧的影响。采用计算流体动力学(CFD)模型模拟了以异辛烷/空气/臭氧混合物为燃料的轴对称火花点火发动机的压缩、燃烧和膨胀过程。目的是评估在不同的发动机转速、点火时间和当量比条件下,臭氧如何改善发动机的性能。该模型已根据文献中的实验数据进行了验证。通过考虑三种发动机转速值(800、1000 和 1200 rpm)、进气阀关闭时的三种不同臭氧浓度(0、100 和 200 ppm)以及两种当量比(0.9 和 0.7),进行了参数分析。结果表明,臭氧可以促进低温燃烧(LTC)机制中的反应,改变混合物的化学成分和自燃趋势。具体来说,在研究的所有情况下,向空气/燃料混合物中添加臭氧都会缩短燃烧时间,从而增加功输出并降低特定燃料消耗。此外,在贫油混合物中使用臭氧的优势要大于在接近公称混合气中使用臭氧的优势。最后,在接近化学计量的情况下,当混合气的停留时间足够长时,尾气中会出现自燃现象。
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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来源期刊
Energy Efficiency
Energy Efficiency ENERGY & FUELS-ENERGY & FUELS
CiteScore
5.80
自引率
6.50%
发文量
59
审稿时长
>12 weeks
期刊介绍: The journal Energy Efficiency covers wide-ranging aspects of energy efficiency in the residential, tertiary, industrial and transport sectors. Coverage includes a number of different topics and disciplines including energy efficiency policies at local, regional, national and international levels; long term impact of energy efficiency; technologies to improve energy efficiency; consumer behavior and the dynamics of consumption; socio-economic impacts of energy efficiency measures; energy efficiency as a virtual utility; transportation issues; building issues; energy management systems and energy services; energy planning and risk assessment; energy efficiency in developing countries and economies in transition; non-energy benefits of energy efficiency and opportunities for policy integration; energy education and training, and emerging technologies. See Aims and Scope for more details.
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