首站-论文投稿智能助手
典型文献
Experimental study of stratified lean burn characteristics on a dual injection gasoline engine
文献摘要:
Due to increasingly stringent fuel consumption and emission regulation,improving thermal efficiency and reducing particulate matter emissions are two main issues for next generation gasoline engine.Lean burn mode could greatly reduce pumping loss and decrease the fuel consumption of gasoline engines,although the burning rate is decreased by higher diluted intake air.In this study,dual injection stratified combustion mode is used to accelerate the burning rate of lean bum by increasing the fuel concentration near the spark plug.The effects of engine control parameters such as the excess air coefficient(Lambda),direct injection(DI)ratio,spark interval with DI,and DI timing on combustion,fuel consumption,gaseous emissions,and particulate emissions of a dual injection gasoline engine are studied.It is shown that the lean burn limit can be extended to Lambda=1.8 with a low compression ratio of 10,while the fuel consumption can be obviously improved at Lambda=1.4.There exists a spark window for dual injection stratified lean bum mode,in which the spark timing has a weak effect on combustion.With optimization of the control parameters,the brake specific fuel consumption(BSFC)decreases 9.05%more than that of original stoichiometric combustion with DI as 2 bar brake mean effective pressure(BMEP)at a 2000 r/min engine speed.The NOx emissions before three-way catalyst(TWC)are 71.31%lower than that of the original engine while the particle number(PN)is 81.45%lower than the original engine.The dual injection stratified lean bum has a wide range of applications which can effectively reduce fuel consumption and particulate emissions.The BSFC reduction rate is higher than 5%and the PN reduction rate is more than 50%with the speed lower than 2400 r/min and the load lower than 5 bar.
文献关键词:
作者姓名:
Chun XIA;Tingyu ZHAO;Junhua FANG;Lei ZHU;Zhen HUANG
作者机构:
Key laboratory of Power Machinery and Engineering,Shanghai Jiao Tong University,Shanghai 200240,China
文献出处:
引用格式:
[1]Chun XIA;Tingyu ZHAO;Junhua FANG;Lei ZHU;Zhen HUANG-.Experimental study of stratified lean burn characteristics on a dual injection gasoline engine)[J].能源前沿,2022(06):900-915
A类:
bum
B类:
Experimental,study,stratified,lean,characteristics,dual,injection,gasoline,Due,increasingly,stringent,fuel,consumption,regulation,improving,thermal,efficiency,reducing,particulate,matter,emissions,are,two,main,issues,next,generation,Lean,mode,could,greatly,reduce,pumping,loss,engines,although,burning,decreased,by,higher,diluted,intake,air,In,this,combustion,used,accelerate,concentration,near,spark,plug,effects,control,parameters,such,excess,coefficient,Lambda,direct,DI,interval,timing,gaseous,studied,It,shown,that,limit,can,extended,compression,while,obviously,improved,There,exists,window,which,has,weak,With,optimization,brake,specific,BSFC,decreases,more,than,original,stoichiometric,bar,mean,pressure,BMEP,speed,NOx,before,three,way,catalyst,TWC,lower,particle,number,PN,wide,range,applications,effectively,reduction,load
AB值:
0.426068
相似文献
Nitrogenous and carbonaceous aerosols in PM2.5 and TSP during pre-monsoon:Characteristics and sources in the highly polluted mountain valley
Hemraj Bhattarai;Lekhendra Tripathee;Shichang Kang;Pengfei Chen;Chhatra Mani Sharma;Kirpa Ram;Junming Guo;Maheswar Rupakheti-Earth System Science Programme and Graduate Division of Earth and Atmospheric Sciences,The Chinese University of Hong Kong,Hong Kong,China;Himalayan Environment Research Institute(HERI),Kathmandu 44602,Nepal;State Key Laboratory of Cryospheric Science,Northwest Institute of Eco-environment and Resources,Chinese Academy of Sciences(CAS),Lanzhou 730000,China;Key Laboratory of Tibetan Environment Changes and Land Surface Processes,Institute of Tibetan Plateau Research,CAS,Beijing 100101,China;CAS Center for Excellence in Tibetan Plateau Earth Sciences,Beijing 100085,China;Central Department of Environmental Sciences,Tribhuvan University,Kathmandu 44613,Nepal;Institute of Environment and Sustainable Development,Banaras Hindu University,Varanasi 221005,India;Instituteffor Advanced Sustainability Studies,Potsdam 14467,Germany
Response of PM2.5-bound elemental species to emission variations and associated health risk assessment during the COVID-19 pandemic in a coastal megacity
Guochen Wang;Kan Huang;Qingyan Fu;Jia Chen;Juntao Huo;Qianbiao Zhao;Yusen Duan;Yanfen Lin;Fan Yang;Wenjie Zhang;Hao Li;Jian Xu;Xiaofei Qin;Na Zhao;Congrui Deng-Shanghai Key Laboratory of Atmospheric Particle Pollution and Prevention(LAP3),Department of Environmental Science and Engineering,Fudan University,Shanghai 200433,China;IRDR ICoE on Risk Interconnectivity and Governance on Weather/Climate Extremes Impact and Public Health,Fudan University,Shanghai 200433,China;Institute of Eco-Chongming(IEC),Shanghai 202162,China;Shanghai Environmental Monitoring Center,Shanghai 200030,China;Pudong New District Environmental Monitoring Station,Shanghai 200122,China;Chinese Research Academy of Environmental Sciences,Beijing 100012,China
Ordered mesoporous carbon spheres assisted Ru nanoclusters/RuO2 with redistribution of charge density for efficient CO2 methanation in a novel H2/CO2 fuel cell
Yan Liu;Tao Zhang;Chao Deng;Shixiu Cao;Xin Dai;Shengwu Guo;Yuanzhen Chen;Qiang Tan;Haiyan Zhu;Sheng Zhang;Yongning Liu-State Key Laboratory for Mechanical Behavior of Materials,Xi'an Jiaotong University,Xi'an 710049,Shaanxi,China;Department of Chemical and Biochemical Engineering,Rutgers,The State University of New Jersey,Piscataway 08854,New Jersey,United States;Chongqing University Key Laboratory of Micro/Nano Materials Engineering and Technology,Chongqing University of Arts and Sciences,Chongqing 402160,China;Institute of Modern Physics,Northwest University,Shaanxi Key Laboratory for Theoretical Physics Frontiers,Xi'an 710069,Shaanxi,China;Key Laboratory for Green Chemical Technology of Ministry of Education,School of Chemical Engineering and Technology,Tianjin University,Tianjin 300072,China
Progress and key challenges in catalytic combustion of lean methane
Xiangbo Feng;Lei Jiang;Danyang Li;Shaopeng Tian;Xing Zhu;Hua Wang;Chi He;Kongzhai Li-Xi'an Key Laboratory of Advanced Photoelectronics Materials and Energy Conversion Device,School of Science,Xijing University,Xi'an 710123,Shaanxi,China;State Key Laboratory of Multiphase Flow in Power Engineering,School of Energy and Power Engineering,Xi'an Jiaotong University,Xi'an 710049,Shaanxi,China;State Key Laboratory of Complex Nonferrous Metal Resources Clean Utilization,Kunming University of Science and Technology,Kunming 650093,Yunnan,China;Faculty of Metallurgical and Energy Engineering,Kunming University of Science and Technology,Kunming 650093,Yunnan,China;National Engineering Laboratory for VOCs Pollution Control Material&Technology,University of Chinese Academy of Sciences,Beijing 101408,China
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。