首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Experimental investigation of the combustion characteristics and the emission characteristics of biogas-diesel dual fuel in a common-rail diesel engine
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Experimental investigation of the combustion characteristics and the emission characteristics of biogas-diesel dual fuel in a common-rail diesel engine

机译:公共铁路柴油发动机燃烧特性及沼气二元燃料排放特性的实验研究

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摘要

An experimental study on biogas-diesel dual-fuel compression ignition was conducted in which biogas and diesel are used as the port-injected fuel and the directly injected fuel respectively. The effects of the total lower heating values QLHVs per cycle and the premixed ratio on the combustion characteristics and the emission characteristics are discussed in detail. The results show that, for constant Q(LHVs), the peak values of the heat release rate curves first decrease and then increase with increasing premixed ratio. Furthermore, the combustion phase is delayed. For a constant premixed ratio, with increasing Q(LHVs), the heat release rate curves change from a unimodal distribution to a bimodal distribution, and the ignition delay decreases constantly. With higher Q(LHVs), the nitrogen oxide emissions and the smoke emissions are relatively higher. In addition, the impacts of biogases with different components on the combustion and emissions were also researched. With increasing hydrogen, the combustion becomes increasingly concentrated, which leads to higher nitrogen oxide emissions. The proportion of carbon monoxide in the biogas has a great effect on the carbon monoxide emissions. Also, the influence of exhaust gas recirculation was also studied. With 60% exhaust gas recirculation, the nitrogen oxide emissions can be inhibited effectively.
机译:进行了对沼气柴油双燃料压缩点火的实验研究,其中沼气和柴油分别用作端口注入的燃料和直接注入的燃料。详细讨论了总下加热值QLHV的QLHV的效果和预混合比和发射特性。结果表明,对于常数Q(LHV),热释放速率曲线的峰值首先降低,然后随着预混合比率的增加而增加。此外,燃烧阶段延迟。对于恒定的预混合比,随着Q(LHV)的增加,热释放速率曲线从单峰分布到双峰分布的变化,点火延迟不断降低。具有较高的Q(LHV),氮氧化物排放和烟雾排放相对较高。此外,还研究了对燃烧和排放不同组分的生物酶对燃烧和排放的影响。随着氢的增加,燃烧越来越浓缩,这导致氮氧化物排放量较高。沼气中一氧化碳的比例对一氧化碳排放产生了很大的效果。而且,还研究了废气再循环的影响。含有60%的废气再循环,可以有效地抑制氧化物排放。

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