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Combustion Mode Design with High Efficiency and Low Emissions Controlled by Mixtures Stratification and Fuel Reactivity

机译:混合物分层和燃料反应性控制的高效低排放燃烧模式设计

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This paper presents a review on the combustion mode design with high efficiency and low emissions controlled by fuel reactivity and mixture stratification that have been conducted in the authors’ group, including the charge reactivity controlled homogeneous charge compression ignition (HCCI) combustion, stratification controlled premixed charge compression ignition (PCCI) combustion, and dual-fuel combustion concepts controlled by both fuel reactivity and mixture stratification. The review starts with the charge reactivity controlled HCCI combustion, and the works on HCCI fuelled with both high cetane number fuels, such as DME and n-heptane, and high octane number fuels, such as methanol, natural gas, gasoline and mixtures of gasoline/alcohols, are reviewed and discussed. Since single fuel cannot meet the reactivity requirements under different loads to control the combustion process, the studies related to concentration stratification and dual-fuel charge reactivity controlled HCCI combustion are then presented, which have been shown to have the potential to achieve effective combustion control. The efforts of using both mixture and thermal stratifications to achieve the auto-ignition and combustion control are also discussed. Thereafter, both charge reactivity and mixture stratification are then applied to control the combustion process. The potential and capability of thermal-atmosphere controlled compound combustion mode and dual-fuel reactivity controlled compression ignition (RCCI)/highly premixed charge combustion (HPCC) mode to achieve clean and high efficiency combustion are then presented and discussed. Based on these results and discussions, combustion mode design with high efficiency and low emissions controlled by fuel reactivity and mixtures stratification in the whole operating range is proposed.
机译:本文对由作者进行的由燃料反应性和混合物分层控制的高效率和低排放的燃烧模式设计进行了综述,包括电荷反应性控制的均质电荷压缩点火(HCCI)燃烧,分层控制的预混合增压压缩点火(PCCI)燃烧,以及由燃料反应性和混合物分层控制的双燃料燃烧概念。审查从控制电荷反应性的HCCI燃烧开始,并研究了以高十六烷值燃料(例如DME和正庚烷)和高辛烷值燃料(例如甲醇,天然气,汽油和汽油混合物)为燃料的HCCI的工作。 /酒精,进行了审查和讨论。由于单一燃料不能满足不同负荷下控制燃烧过程的反应性要求,因此提出了与浓度分层和双燃料电荷反应性控制的HCCI燃烧有关的研究,这些研究表明它们有可能实现有效的燃烧控制。还讨论了使用混合分层和热分层来实现自燃和燃烧控制的努力。此后,然后施加电荷反应性和混合物分层以控制燃烧过程。然后介绍并讨论了热大气控制的复合燃烧模式和双燃料反应性控制的压缩点火(RCCI)/高预混进气燃烧(HPCC)模式实现清洁高效燃烧的潜力和能力。基于这些结果和讨论,提出了在整个工作范围内通过燃料反应性和混合物分层控制的高效低排放燃烧模式设计。

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