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An investigation of the performance of an electronic in-line pump system for diesel engines

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【作者】 范立云朱元宪隆武强马修真薛莹莹

【Author】 FAN Li-yun1,ZHU Yuan-xian2,LONG Wu-qiang1,MA Xiu-zhen3,XUE Ying-ying2 1.Internal Combustion Engine Institute,Dalian University of Technology,Dalian 116024,China 2.Chengdu Wit Electric Fuel Injection Co.,Ltd.,Chengdu 610092,China 3.College of Power and Energy Engineering,Harbin Engineering University,Harbin 150001,China

【机构】 Internal Combustion Engine Institute,Dalian University of TechnologyChengdu Wit Electric Fuel Injection Co.,Ltd.College of Power and Energy Engineering,Harbin Engineering University

【摘要】 WIT Electronic Fuel System Co.,Ltd.has developed a new fuel injector,the Electronic In-line Pump(EIP) system,designed to meet China’s diesel engine emission and fuel economy regulations.It can be used on marine diesel engines and commercial vehicle engines through different EIP systems.A numerical model of the EIP system was built in the AMESim environment for the purpose of creating a design tool for engine application and system optimization.The model was used to predict key injection characteristics under different operating conditions,such as injection pressure,injection rate,and injection duration.To validate these predictions,experimental tests were conducted under the conditions that were modeled.The results were quite encouraging and in agreement with model predictions.Additional experiments were conducted to study the injection characteristics of the EIP system.These results show that injection pressure and injection quantity are insensitive to injection timing variations,this is due to the design of the constant velocity cam profile.Finally,injection quantity and pressure vs.pulse width at different cam speeds are presented,an important injection characteristic for EIP system calibration.

【Abstract】 WIT Electronic Fuel System Co.,Ltd.has developed a new fuel injector,the Electronic In-line Pump(EIP) system,designed to meet China’s diesel engine emission and fuel economy regulations.It can be used on marine diesel engines and commercial vehicle engines through different EIP systems.A numerical model of the EIP system was built in the AMESim environment for the purpose of creating a design tool for engine application and system optimization.The model was used to predict key injection characteristics under different operating conditions,such as injection pressure,injection rate,and injection duration.To validate these predictions,experimental tests were conducted under the conditions that were modeled.The results were quite encouraging and in agreement with model predictions.Additional experiments were conducted to study the injection characteristics of the EIP system.These results show that injection pressure and injection quantity are insensitive to injection timing variations,this is due to the design of the constant velocity cam profile.Finally,injection quantity and pressure vs.pulse width at different cam speeds are presented,an important injection characteristic for EIP system calibration.

【关键词】 EIPmarine enginefuel injection systemAMESim
【Key words】 EIPmarine enginefuel injection systemAMESim
  • 【文献出处】 Journal of Marine Science and Application ,船舶与海洋工程学报(英文版) , 编辑部邮箱 ,2008年04期
  • 【分类号】TK42
  • 【被引频次】5
  • 【下载频次】168
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