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首页> 外文期刊>Energy Conversion & Management >Assessment of performance, combustion and emission characteristics of a direct injection diesel engine with solar driven Jatropha biomass pyrolysed oil
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Assessment of performance, combustion and emission characteristics of a direct injection diesel engine with solar driven Jatropha biomass pyrolysed oil

机译:太阳能驱动的麻风树生物质热解油的直喷柴油机的性能,燃烧和排放特性评估

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摘要

The paper is aimed to utilize pyrolysed oil (PO) as a fuel candidate in a direct injection diesel engine. Concentrated solar energy was used to produce pyrolysed oil from Jatropha biomass. The pyrolysed oil was upgraded and blended with diesel at 20%, 40%, and 60% shares (PODB20, PODB40, and PODB60). Experimental tests were conducted on a 3.7 kW single cylinder compression ignition (CI) engine at different loads with base diesel and PO blended fuels. Experimental results showed the improvement in thermal efficiency of the engine with low percentage of PO shares (PODB20 and PODB40) as compared to base diesel however, it was decreased slightly with high percentage of PO share (PODB60). In cylinder pressure was increased initially with addition of PO until 40% due to the dominant effect of inherent oxygen content, and then declined with further addition of PO due to the dominant effect of lower heating value and higher density of PO. Ignition delay and combustion duration were increased continually with increasing percentage of PO share. Unburnt hydrocarbons, carbon monoxide and smoke emissions initially decreased with lower PO shares (20% and 40%) due to high combustion temperature and later increased with higher PO share (60%), whereas oxides of nitrogen emission was followed the reverse trends. A clear insight obtained from the study is that blending of PO with diesel to a certain extent (until 40%) is beneficial in terms of higher thermal efficiency and lower emissions (all carbon based emissions) beyond which a slight penalty in the engine performance and emission characteristics was explored. (C) 2017 Elsevier Ltd. All rights reserved.
机译:该论文旨在利用热解油(PO)作为直接喷射柴油发动机的候选燃料。集中的太阳能被用来从麻疯树生物质中生产热解油。将热解油进行升级,并与柴油以20%,40%和60%的比例(PODB20,PODB40和PODB60)混合。实验是在3.7 kW单缸压缩点火(CI)发动机上使用基本柴油和PO混合燃料在不同负载下进行的。实验结果表明,与基础柴油相比,具有低PO份额(PODB20和PODB40)的发动机的热效率有所提高,但是,随着高PO份额(PODB60)的情况,其热效率有所降低。由于固有氧含量的显着影响,缸内压力最初通过添加PO直至40%升高,然后由于更低的热值和更高的PO的显着效果而随着进一步添加PO而降低。点火延迟和燃烧持续时间随着PO份额的增加而持续增加。由于燃烧温度高,未燃烧的碳氢化合物,一氧化碳和烟气排放最初以较低的PO份额(20%和40%)减少,后来随着较高的PO份额(60%)而增加,而氮氧化物的排放呈相反的趋势。从研究中获得的明确见解是,将PO与柴油混合到一定程度(直至40%)有利于提高热效率和降低排放(所有基于碳的排放),在此之外,对发动机性能和探索了发射特性。 (C)2017 Elsevier Ltd.保留所有权利。

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