首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Effects of the ignition timing retard and the compression ratio on the full-load performance and the emissions characteristics of a heavy-duty engine fuelled by hydrogen-natural-gas blends
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Effects of the ignition timing retard and the compression ratio on the full-load performance and the emissions characteristics of a heavy-duty engine fuelled by hydrogen-natural-gas blends

机译:点火正时延迟和压缩比对以氢-天然气混合物为燃料的重型发动机的满负荷性能和排放特性的影响

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摘要

Heavy-duty natural-gas vehicles contribute towards environmental improvement in the air quality of downtown areas because the particulate matter emissions are quite low and lean combustion facilitates improvement in the efficiency and reduction in the harmful emissions. However, because stronger emission regulations such as Euro VI cannot be satisfied using the current technology, new technology is required. Hydrogen-natural-gas blend engines have been investigated as an alternative in preparation for the hydrogen era. Such engines make further emission reductions and efficiency improvements possible by extending the lean-combustion limit. However, they do have some disadvantages such as the degradation in the full-load performance, which can limit the reduction in the nitrogen oxide emissions or the operation range because the extension of the lean-burn limit requires a larger amount of intake air even under a wide-open throttle operating condition. In the present study, the full-load performance and emissions characteristics of a hydrogen-compressed-natural-gas engine were evaluated using hydrogen-compressed-natural-gas fuel with a hydrogen content of 30 vol%. In order to achieve performance improvement, a spark timing retard strategy was employed, together with a change in the compression ratio. After examining the full-load performance for each parameter change, the emission characteristics were assessed to analyse the commercialization potential and feasibility of this hydrogen-compressed-natural-gas engine. For a higher compression ratio, the specified torque value could be achieved with spark timing retard; an excess air ratio of 1.8 was found to be preferable, and the nitrogen oxide emissions standard of Euro VI was satisfied.
机译:重型天然气汽车有助于改善市区空气质量,因为颗粒物排放量非常低,稀薄燃烧有助于提高效率并减少有害排放物。但是,由于使用当前技术无法满足更严格的排放法规(例如,欧VI),因此需要新技术。氢-天然气混合发动机已被研究作为氢时代的替代品。这种发动机通过延长稀燃极限来进一步减少排放并提高效率。但是,它们确实有一些缺点,例如满负荷性能下降,这可能会限制氮氧化物排放量或运行范围的减少,因为稀薄燃烧极限的扩展甚至在以下情况下也需要大量的进气节气门全开状态。在本研究中,使用氢气含量为30 vol%的氢气压缩天然气燃料评估了氢气压缩天然气发动机的满负荷性能和排放特性。为了实现性能改善,采用了火花正时延迟策略以及压缩比的变化。在检查了每个参数变化的满负荷性能后,评估了排放特性,以分析这种氢压缩天然气发动机的商业化潜力和可行性。对于更高的压缩比,可以在延迟点火正时的情况下达到规定的扭矩值;发现优选1.8的过量空气比率,并且满足Euro VI的氮氧化物排放标准。

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