期刊文献+

船用低速柴油机电控喷油器预喷射对主喷射循环喷油量的影响

Influence of pilot injection to main fuel injection quantity of electronic control injector for low-speed marine diesel engin
下载PDF
导出
摘要 喷油器进行多次喷射时,不同喷射之间会产生相互影响,导致循环喷油量随着喷射间隔(dwell time,DT)的变化产生波动,给柴油机油量的控制增加了难度。本文根据船用低速柴油机电控喷油器的概念设计,利用AMESim仿真平台搭建了喷油器的数值仿真模型,研究预喷射对主喷射循环喷油量的影响,揭示出预喷射引起的喷油器内部的压力波动是导致主喷油量随DT波动的根本原因。分析控制阀杆最大升程、控制腔进油孔直径、控制腔出油孔直径和喷孔直径等4个特性参数对主喷油量波动规律的影响,得出参数变化主要影响主喷油量的波动幅值和相位的结论。 In the process of multiple injection,different injections have influences on each other,and it lead to fluctuation on cycle fuel injection with DT. This enhances difficulty of controlling fuel quantity. Simulation model of injector was established in AMESim environment according to the conceptual design of low-speed marine diesel engine. Influences of pilot injection to main fuel injection quantity were studied,and it showed the pressure wave fluctuation is the fundamental reason what leads to the fluctuation of main injection quantity with DT. Impacts on variation law of main fuel injection quantity with DT of control valve rod maximum lift,control chamber inlet hole diameter,outlet diameter and nozzle diameter were analyzed in details. And the conclusion was obtained that variation of characteristic parameters impacted on fluctuation range and phase of main fuel injection quantity. Affect degree of different parameters was also summarized.
出处 《舰船科学技术》 北大核心 2015年第6期80-86,共7页 Ship Science and Technology
关键词 船用低速柴油机 电控喷油器 预喷射 主喷射 循环喷油量 low-speed marine diesel engine electronic control injector pilot injection main injection cycle fuel injection
  • 相关文献

参考文献7

  • 1王征, 杨建国, 余永华. RT-flex低速大功率智能化柴油机的技术分析[J]. 航海工程, 2009,38(5):100-102.
  • 2LIU Y,ZHANG Y T,QIU T,et al.Optimization research for a high pressure common rail diesel engine based on simulation[J].International Journal of Automotive Technology,2010,11(5):625-636.
  • 3CATANIA A E,FERRARI A,SPESSA E.Numericalexperimental study and solutions to reduce the dwell-time threshold for fusion-free consecutive injections in a multijet solenoid-type CR system[J].Engineering for Gas Turbines and Power,MARCH 2009,131:022804.
  • 4BRUNNER H,BETSCHART M,FANKHAUSER S.Common rail wartsila two-stroke engines in practice[C]//CIMAC Congress,Bergen,Norway,2010.
  • 5KOHKETSU S,TANABE K,MORI K.Flexibly controlled injection rate shape with next generation common rail system for heavy duty DI diesel engines[C]//SAE paper2000-01-0705,2000.
  • 6CATANIA A E,FERRARI A,et al.Experimental investigation of dynamics effects on multiple-injection common rail system performance[J].Engineering for Gas Turbines and Power,MAY 2008,130/032806.
  • 7苏海峰,张幽彤,罗旭,丁晓亮.高压共轨系统水击压力波动现象试验[J].内燃机学报,2011,29(2):163-168. 被引量:25

二级参考文献9

  • 1Mikio Kumano, Kenzo Yano, Kanehito Nakamura, et al. Advanced electronics for a clean diesel engine man agement system [C]. SAE Paper 2006-21-0059, 2006.
  • 2Baratta Mirko,Catania Andrea Emilio,Ferrari Alessandro. Hydraulic circuit design rules to remove the dependence of the injected fuel amount on dwell time in multijet CR systems [J]. Journal of Fluids Engineering DECEMBER,2008, 130(12) :4-13.
  • 3Catania A E, Ferrari A, Manno M. Development and application of a complete common-rail injection system mathematical model for hydrodynamics analysis and diagnostics [C]. ASME Paper ICES 2005-1018,2005.
  • 4Dr Rolf Leonhard, Johann Warga, Dr Thomas Pauer, et al. Bosch 2000-bar common rail system for passenger cars and light duty vehicles [C]. 29 Intemationales Wiener Motorensymposium, 2008.
  • 5Bianchi G M, Falfari S, Brusiani F, et al. Numerical investigation of critical issues in multipleinjection strategy operated by a new C. R. fast-actuation solenoid injector[C]. SAE Paper 2005-01-1236,2005.
  • 6Catania A E, Ferrari A, Manno M, et al, Experimental investigation of dynamic effects on multiple-injection common rail system performance[J]. ASME J Eng Gas Turbines Power, 2005, 130 (3) : 1-13.
  • 7Marco Coppo, Claudio Dongiovanni, Claudio Negri. Numerical analysis and experimental investigation of a common rail-type diesel injector[J]. Transactions of the ASME, 2004, 126(4) : 874-885.
  • 8蔡亦钢.流体传输管道动力学[M].浙江:浙江大学出版社,1990.
  • 9苏海峰,张幽彤,王尚勇,孙帅.高压共轨喷油器喷射特性实验与仿真[J].农业机械学报,2011,42(1):22-26. 被引量:31

共引文献25

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部