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基于Taguchi方法的多段预混压燃发动机喷油策略优化 被引量:1

Injection Strategy Optimization for a Multiple Premixed Compression Ignition Engine Based on Taguchi Method
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摘要 在一台4缸柴油机上使用一种低辛烷值G80混合燃料(汽油和柴油的体积比为80∶20)进行了多段预混压燃(MPCI)模式的研究.通过Taguchi试验设计方法和方差分析,解析了喷油时刻、喷油比例等变量对燃烧和排放性能的影响,结果表明:指示燃油消耗率和NO_x排放主要受次喷时刻影响,碳烟排放主要受首喷时刻影响.基于上述结果,协同优化喷油时刻和喷油比例,实现了低于原柴油机的NO_x、碳烟排放和指示燃油消耗率.通过能量利用分析,发现低传热损失和低排气损失是G80压燃发动机获得高指示热效率的主要原因. Multiple premixed compression ignition (MPCI) combustion mode was investigated in a four-cylinder diesel engine fueled with a low octane number fuel named G80 (80% gasoline and 20% diesel by volume). By applying Taguchi method and analysis of variance (ANOVA), the effect of double injection timings and fuel split ratio on combustion and emissions was studied. The results show that the second injection timing mainly affects the indicated specific fuel consumption (ISFC) and indicated specific nitrogen oxides (ISNOx), while the first injection timing affects the soot emission. The injection timings and split ratio were optimized to achieve lower ISFC, ISNOx and soot emis- sions simultaneously with GS0 fuel compared with diesel. It is found by energy balance analysis that low heat transfer loss and low exhaust loss are the main reason of high thermal efficiency of G80.
出处 《内燃机学报》 EI CAS CSCD 北大核心 2018年第1期1-9,共9页 Transactions of Csice
基金 国家自然科学基金资助项目(51276097)
关键词 柴油机 低辛烷值燃料 多段预混压燃 方差分析 diesel engine low octane number fuel multiple premixed compression ignition analysis of variance
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  • 1王建昕,蒋恒飞,王燕军,何邦全,田辛.汽油均质混合气柴油引燃(HCII)燃烧特性的研究[J].内燃机学报,2004,22(5):391-396. 被引量:35
  • 2梅德清,孙平,袁银南,陈启龙,刘伟.柴油机燃用生物柴油的排放特性研究[J].内燃机学报,2006,24(4):331-335. 被引量:62
  • 3Knafl A, Jacobs T J, Bohac S V, et al. The load limits of low temperature premixed compression ignition diesel combustion [R] . The 2nd International Symposium on Clean and High-Efficiency Combustion in Engines, Yianjin, 2006. 被引量:1
  • 4Jacobs T J, Assanis D N. The attainment of premixed compression ignition low-temperature combustion in a compression ignition direct injection engine [J]. Proceed- ings of the Combustion Institute, 2007, 31 (2): 2913- 2920. 被引量:1
  • 5Kalghatgi G T, Risberg P, Angstrom H. Partially premixed auto-ignition of gasoline to attain low smoke and low NOx at high load in a compression ignition engine and comparison with a diesel fuel[C]. SAE Paper 2007- 01-0006, 2007. 被引量:1
  • 6Han D, Ickes A M, Assanis D N, et al. Attainment and load extension of high-efficiency premixed low- temperature combustion with dieseline in a compression ignition engine[J]. Energy and Fuels, 2010, 24(6) : 3517-3525. 被引量:1
  • 7Lu X, Chen W, Huang Z. A fundamental study on the control of the HCCI combustion and emissions by fuel design concept combined with controllable EGR part 1 : the basic characteristics of HCCI combustion[JJ. Fuel, 2005, 84(9): 1074-1083. 被引量:1
  • 8Lu X, Chen W, Huang Z. A fundamental study on the control of the HCCI combustion and emissions by fuel design concept combined with controllable EGR part 2 : effect of operating conditions and EGR on HCCI combustion[J]. Fuel, 2005, 84(9) : 1084-1092. 被引量:1
  • 9Ickes A M, Bohac S V, Assanis D N. Effect of fuel cetane number on a premixed diesel combustion mode [J]. International Journal of Engine Research, 2009, 10(4): 251-263. 被引量:1
  • 10Shibata G, Oyama K, Urushihara T, et al. Correlation of low temperature heat release with fuel composition and HCCI engine combustion[C]. SAE Paper 2005-01- 0138, 2005. 被引量:1

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