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电控组合泵低压系统压力动态特性研究 被引量:10

Investigation on Fuel Pressure Dynamic Characteristic of the Electronic Control Assembly Pump Low Pressure System
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摘要 电控组合泵是集机械、液力和电磁于一体的系统,是一种满足柴油机排放和经济性的新型电控单体泵喷油系统。其低压系统压力动态特性影响了高压系统各缸循环喷射特性的一致性。试验研究表明,在工作时低压系统燃油压力一直处于脉动的循环波动,压力波动范围从最小接近表压0MPa到最大2MPa,波动效应幅值随着喷油脉宽的增加而增大,并且不同测试位置压力波动特性存在微小的不同,压力波形时域曲线与喷油缸数有一一对应关系。对其进行傅里叶变换得出随着工作缸数增加,高压系统对低压系统的影响主要表现在基准频率的倍频部分;对其小波变换得出随着喷油缸数增加,低压压力信号同时向小波变换信号低频和高频方向移动。为了分析低压压力波动对高压喷射特性的影响,采用AMESim软件建立数值模型,计算结果表明各缸低压系统燃油压力和高压系统喷射压力处于循环波动状态,并且各缸存在差别,导致各缸循环喷油量存在微小差别,在1.5mm3内波动,均方差在0.5mm3范围内。 Electronic control assembly pump(ECAP)assembles mechanical hydraulic and electrical magnetic,and is a new electronic unit pump(EUP)fuel injection system which satisfies requirement of emission and fuel economy of diesel.The low pressure system pressure dynamic characteristic influences the coherence of each cylinder cyclic injection performance on the high pressure system.Experiment shows that the low pressure system fuel pressure always has the pulsating cycle fluctuation in operation,the fluctuation range is from minimum 0 MPa to maximum 2 MPa,the fluctuation amplitude improves with the increase of injection duration,and pressure dynamic characteristic has little difference at different measurement position.Pressure time history curve and injection cylinders have the corresponding relationship.Fourier analysis shows that the influence of high pressure system on low pressure system mainly focuses on the multiple frequency part of datum frequency as working cylinders increase.Wavelet transform shows that low pressure signal simultaneously moves towards low frequency and high frequency of the wavelet transform signal as injection cylinders increase.To analyze the influence of low pressure fluctuation on high pressure injection characteristic,the numerical study is conducted using the AMESim software.Simulation result shows fuel pressures at low pressure system and high pressure system are cyclic fluctuation.Cyclic fuel injection quantity at each cylinder has little difference,the fluctuation range is 1.5 mm3,and mean square deviation is within 0.5 mm3.
出处 《内燃机学报》 EI CAS CSCD 北大核心 2010年第2期147-154,共8页 Transactions of Csice
基金 国家自然科学基金资助项目(50909024) 黑龙江省博士后基金资助项目(3236301244)
关键词 电控组合泵 单体泵 低压系统 压力动态特性 ECAP EUP Low pressure system Pressure dynamic characteristic
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参考文献8

  • 1朱元宪,余泽,汪世伦,万彬,唐仁宏,徐平涛,丁迪曾,裘洌,宋厚航,范立云.一种适合中国市场的柴油机电控燃油喷射系统——电控组合泵的研制[J].现代车用动力,2008(1):11-17. 被引量:13
  • 2Yang Minggao, Sorenson S C. Modeling of the Dynamic Processes in an Electronic Diesel Fuel Injection System [ C ]. SAE Paper 9202400,1992.
  • 3Cantore G, Mattarelli E, Boretti A A. Experimental and Theoretical Analysis of a Diesel Fuel Injection System [ C ]. SAE Paper 1999-01-0199, 1999.
  • 4Mulemane Aditya, Han Joong-Sub, Lu Pai-Hsiu, et al. Modeling Dynamic Behavior of Diesel Fuel Injection Systems [ C]. SAE Paper 2004-01-0536, 2004.
  • 5郝守纲.电控单体泵电磁阀电磁机液特性研究[D].北京:清华大学,2003.
  • 6范立云,朱元宪,隆武强,宋厚杭,余泽,李大勇.电控组合泵循环喷油量波动的量化分析[J].内燃机学报,2008,26(3):264-271. 被引量:7
  • 7Fan Liyun, Long Wuqiang, Zhu Yuanxian, et al. A Characteristic Study of Electronic In-Line Pump System for Diesel Engines[ C]. SAE Paper 2008-01-0943, 2008.
  • 8范立云,朱元宪,隆武强,余泽,汪世伦,丁迪曾,裘洌.电控组合泵柴油机喷油系统的性能研究[J].内燃机学报,2007,25(5):451-456. 被引量:23

二级参考文献20

  • 1[2]Bauer H,Diesel-Engine Management[M].Postfach 1129 Germany:Robert Bosch GmbH,2004.
  • 2[3]Hames R J,Hart D L,Gillham G V,Weisman S M,et al.DDECII Advanced Electronic Diesel Control[C].SAE 861110.
  • 3[4]Schittler M,Bergmann H,Flathmann K.The New Mercedes-Berz OM 904 LA Light Heavy-Duty Diesel Engine for Class 6 Trucks[C].SAE 960057.
  • 4[5]Stumpp G,Ricco M.Common Rail-An Attractive Fuel Injection System for Passenger Car DI Diesel Engines[C].SAE 960870.
  • 5[6]Glassey S F,Stockner A R,Flinn M A.HEUI-A New Direction for Diesel Engine Fuel Systems[C].SAE 930270.
  • 6[7]Zhu Y,Ricart-Ugaz L,Wu S,et al.Combustion Development of New International 6.0L V8 Diesel Engine[C].SAE 2004-01-1404.
  • 7[1]Tow T C,Pierpont D A,Reitz R D.Reducing Particulate and NOx Emissions by Using Multiple Injections in a Heavy Duty D.I.Diesel Engine[C].SAE Paper 940897,1994.
  • 8[2]Gebert K,Barkhimer R L,Beck N J,et al.An Evaluation of Common Rail,Hydraulically Intensified Diesel Fuel Injection System Concepts and Bate Shapes[C].SAE Paper 981930,1998.
  • 9[3]Lee Taewon,Reitz R D.The Effects of Split Injection and Swirl on a HSDI Diesel Engine Equipped with a Common Bail Injection System[C].SAE Paper 2003-01-0349,2003.
  • 10[4]Russell M F,Young C D,Nicol S W.Modulation of Injection Rate to Improve Direct Injection Diesel Engine Noise[C].SAE Paper 900349,1990.

共引文献36

同被引文献47

  • 1郦呜阳,王国雄.SGYC—Ⅰ型低压微泄漏检测仪[J].液压气动与密封,1994,14(2):2-4. 被引量:4
  • 2仇滔,刘兴华.电控单体泵供油系统仿真研究[J].车用发动机,2005(2):23-25. 被引量:16
  • 3刘波澜,陆宏泽,张付军,赵长禄.电控单体泵燃油喷射系统一维耦合仿真[J].兵工学报,2007,28(3):267-271. 被引量:6
  • 4张向前,王新晴,陈雄,王洋.提高PLC输出信号质量的技术研究[J].现代制造工程,2007(6):124-125. 被引量:4
  • 5Matteo L D, Fortunato F, Oliva P, et al. Modeling and analysis of the low pressure fuel system for a direct injection diesel engine [ C ]. SAE Paper 2005 - 01 - 3854, 2005.
  • 6Wang Yupeng, Liu Xinghua, Chen Yuhang, et al. The optimal drive current of solenoid valve and analysis of its effect on fuel injection characteristics [ C ]//Proceedings of the 2010 International Conference on Electrical and Control Engineering (ICECE 2010), 2010:2 383 -2 387.
  • 7Lino P, Maione B, Rizzo A. Nonlinear modelling and control of a common rail injection system for diesel engines[J]. Applied Mathematical Modelling,2007,31 : 1770 1784.
  • 8Favennec A G, Minier P, Lebrun M. Analysis of the dynamic behavionr of the circuit of a common rail direct injection system [C]. Tokyo: Fourth JHPS International Symposium of Fluid Power, 1999.
  • 9Chaufour P, Millet G, Hedna M. Advanced modeling of a heavy-truck unit-injector system and its application in the engine design process[C]//SAE 2004-01-0020,2004.
  • 10Catania A E, Ferrari A, Manno M, et al. Experimental investigation of dynamics effects on multiple injection common rail system performance[J].ASME 032801-1,2008.

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