Mechanism of spray in gasoline direct injection engine based on laser diagnostics

被引:0
|
作者
Shang Y. [1 ]
Jin W. [1 ]
机构
[1] Ministry of Industry and Information Technology Equipment Industry Development Center, Beijing
关键词
Direct injection; Image processing; Internal combustion engine; Laser diagnostics; Spray;
D O I
10.13700/j.bh.1001-5965.2019.0178
中图分类号
学科分类号
摘要
It is important to study the direct injection spray penetration and spray cone angle characteristics of gasoline for the occurrence and development of spray and combustion characteristics in gasoline direct injection engine. Based on the design and building of gasoline direct injection (GDI) system, the constant volume combustion bomb system and the optical testing system are established, and based on LSD measurement technique, the influence of injection pressure and back pressure on the spray characteristics of GDI engine is studied in this paper. The experiment shows that with the increase of injection pressure, the penetration at the same injection time gradually increases. With the increase of back pressure, the penetration at the same injection time decreases gradually. Under different injection pressure and back pressure, with the development of injection time, the penetration gradually increases, and the spray cone angle is between 38° and 50°. © 2020, Editorial Board of JBUAA. All right reserved.
引用
收藏
页码:60 / 66
页数:6
相关论文
共 16 条
  • [1] Shang Y., Research on the mechanism of spray in gasoline direct injection engine based on laser diagnostics, (2016)
  • [2] Gordon J.P., Zeiger H.J., Townes C.H., The MASER-New type of microwave amplifier, frequency standard, and spectrometer, Physical Review, 99, 4, pp. 1264-1274, (1955)
  • [3] Maiman T.H., Maser behavior: Temperature and concentration effects, Journal of Applied Physics, 31, 1, (1960)
  • [4] Zhang G.M., Xu M., Laser diagnostics for spray of spark ignition direct injection (SIDI) combustion system, Journal of Automotive Safety and Energy, 2, 4, pp. 294-307, (2011)
  • [5] Hiroyasu H., Arai M., Structures of fuels sprays in diesel engines, SAE International Congress and Exposition, pp. 1-10, (1990)
  • [6] Johnson J.E., Naber J.D., Lee S.Y., Characterizing diesel fuel spray cone angle from back-scattered imaging by fitting Gaussian profiles to radial spray intensity distributions, Journal of Engineering for Gas Turbines and Power, 134, 6, (2012)
  • [7] Kenneth K.K., Recent Advanced Spray Combust: Spray Atom Drop Burning Phenom, (1996)
  • [8] Gal P.L., Farrugia N., Greenhalgh D.A., Laser sheet drop sizing of dense sprays, Optical Laser Technology, 31, 1, pp. 75-83, (1999)
  • [9] Shi S.X., Su W.H., Wang Y., Et al., A new method for measuring the SMD distribution of diesel spray: Fluorescence/scattering light image processing method, Transactions of CSICE, 14, 2, pp. 221-228, (1996)
  • [10] Zhang J.Q., Obokata T., Shiga S., Et al., Investigation of steady spray characteristics for kerosene containing dissolved methane, Journal of Xi'an Jiaotong University, 39, 1, pp. 31-35, (2005)