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A numerical investigation of the effects of combustion parameters on the performance of a compression ignition engine toward NOx emission reduction

机译:燃烧参数对压缩点火发动机降低NOx排放性能影响的数值研究

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摘要

In this paper, a detailed multi-dimensional simulation based on fuel chemical reactions has been presented to investigate the effects of the most important parameters on performance and emission of a reactivity controlled compression ignition (RCCI) engine. The different characteristics of combustion phasing such as start of combustion, combustion duration, and 10%-90% of mass fraction burned (MFB) for iso-octane-heptane fuels have been studied. The effects of each important parameter such as amount of fuel delivered by varying fuels ratio, engine load and speed, injection timing, equivalence ratio, exhaust gas recirculation (EGR) application, boost pressure, injection pressure as well as combination of these different parameters and improved fuel octane number at higher compression ratios were evaluated to discover the most effective parameter on performance and emission of an RCCI engine. Distribution and coefficient of variation (COV) of equivalence ratio were examined in base cases to evaluate the influence of high reactivity fuel on distribution points. In addition, to acquiring a comprehensive perception, the results highlighted that by concurrently applying different parameters with diverse effects, new corridors to significantly abate nitrogen oxides (NOx) pollutant can be achievable depending on the specific situations. Generally, the parameters that prolong the combustion duration demonstrated positive effects on combustion process leading to cleaner combustion with lower engine-out NOx. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在本文中,提出了基于燃料化学反应的详细多维模拟,以研究最重要参数对反应堆控制压燃(RCCI)发动机性能和排放的影响。对异辛烷/正庚烷燃料的燃烧定相的不同特征,例如燃烧开始,燃烧持续时间和已燃烧质量分数(MFB)的10%-90%。每个重要参数的影响,例如通过改变燃油比,发动机负载和速度,喷射正时,当量比,废气再循环(EGR)应用,增压压力,喷射压力以及这些不同参数的组合所产生的燃油量。评价了在较高压缩比下改进的燃料辛烷值,以发现有关RCCI发动机性能和排放的最有效参数。在基本情况下检查了当量比的分布和变异系数(COV),以评估高反应性燃料对分布点的影响。此外,为了获得全面的认识,结果强调,通过同时应用具有不同效果的不同参数,可以根据特定情况实现新的走廊,以显着减少氮氧化物(NOx)污染物。通常,延长燃烧持续时间的参数显示出对燃烧过程的积极影响,从而导致更清洁的燃烧以及更低的发动机NOx排放。 (C)2017 Elsevier Ltd.保留所有权利。

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