Skip to main content
Log in

Steady-flow characteristics and its influence on spray for direct injection diesel engine

  • Published:
KSME International Journal Aims and scope Submit manuscript

Abstract

Flow and spray characteristics are critical factors that affect the performance and exhaust emissions of a direct injection diesel engine. It is well known that the swirl control system is one of the useful ways to improve the fuel consumption and emission reduction rate in a diesel engine. However, until now there have only been a few studies on the effect of flow on spray. Because of this, the relationship between the flow pattern in the cylinder and its influence on the behavior of the spray is in need of investigation. First, in-cylinder flow distributions for 4-valve cylinder head of Dl (Direct Injection) Diesel engine were investigated under steady-state conditions for different SCV (Swirl Control Valve) opening angles using a steady flow rig and 2-D LDV (Laser Doppler Velocimetry). It was found that swirl flow was more dominant than that of tumble in the experimented engine. In addition, the in-cylinder flow was quantified in terms of swirl/tumble ratio and mean flow coefficient. As the SCV opening angle was increased, high swirl ratios more than 3.0 were obtained in the case of SCV -70ΰ and 90ΰ. Second, spray characteristics of the intermittent injection were investigated by a PDA (Phase Doppler Anemometer) system. A Time Dividing Method (TDM) was used to analyze the microscopic spray characteristics. It was found that the atomization characteristics such as velocity and SMD (Sauter Mean Diameter) of the spray were affected by the in-cylinder swirl ratio. As a result, it was concluded that the swirl ratio improves atomization characteristics uniformly.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Similar content being viewed by others

References

  • Arcoumanis, C. and Tanabe, S., 1989, “Swirl Generation by Helical Ports,” SAE Paper 890790.

  • Furuno, S. and Iguchi, S., 1990, “The Effects of ‘Inclination Angle of Swirl Axis’ on Turbulence Characteristics in a 4-Valve Lean-Burn Engine with SCV,” SAE Paper 902139.

  • Giorgio, F. D. and Laforgia, D., 1995, “Investigation of Drop Size Distribution in the Spray of a Five-Hole, VCO Nozzle at High Feeding Pressure,” SAE Paper 950087.

  • Hikosaka, N., 1997, “A View of the Future of Automotive Diesel Engines,” SAE Paper 972682.

  • Ishima, T., Obokata, T., 1997, “Time Dividing Analysis of Intermittent Fuel Spray Flows Measured by PDA,” ICLASS-97, Seoul.

  • Kang, K. and Reitz, R., 1999, “The Effect of Intake Valve Alignment on Swirl Generation in a DI Diesel Engine,”Experiment Thermal and Fluid Science, pp. 94–103.

  • Lee, K. and Urushihara, T., 1993, “Analysis of Gas Flow Fields Generated by Butterfly type Swirl Control Valve,” JSAE Paper 9304365.

  • Lefebvre. H., 1989, “Atomization and Sprays,” Hemisphere Publishing Corporation.

  • Mase, Y., Kawashima, J. and Sato, T., 1998, “Nissan’s New Multi-Valve DI Diesel Engine Series,” SAE Paper 981039.

  • Ogawa, H., Matsui, Y. and Kimura, S., 1996, “3-D Computation of the Effects of the Swirl Ration in DI Diesel Engine on NOX and Soot Emissions,” SAE Paper 961125.

  • Pischinger, F. F., 1998, “The Diesel Engine for Cars-Is There a Future,”J. Eng. For Gas Turbines and Power, Trans. ASME 120, pp. 641–647.

    Article  Google Scholar 

  • Quoc, H. X. and Brun, M., 1994, “Study on Atomization and Fuel Drop Size Distribution in Direct Injection Diesel Spray,” SAE Paper 940191.

  • Snauwaert, P. and Sievens, R., 1986, “Experimental Study of the Swirl Motion in DI Diesel Engine Under Steady State Flow Conditions,” SAE Paper 860026.

  • Stone, C. R. and Ladommatos, N., 1992, “The Measurement and Analysis of Swirl Steady-Flow,” SAE Paper 921642.

  • Urushihara, T., Murayama, T. and Lee, K., 1995, “Turbulence and Cycle-by-Cycle Variation of Mean Velocity Generated by Swirl and Tumble Flow and Their Effects on Combustion,” SAE Paper 950813.

Download references

Author information

Authors and Affiliations

Authors

Corresponding author

Correspondence to Chunghwan Jeon.

Rights and permissions

Reprints and permissions

About this article

Cite this article

Choi, Sh., Jeon, C. & Chang, Y.J. Steady-flow characteristics and its influence on spray for direct injection diesel engine. KSME International Journal 16, 986–998 (2002). https://doi.org/10.1007/BF02949728

Download citation

  • Received:

  • Revised:

  • Issue Date:

  • DOI: https://doi.org/10.1007/BF02949728

Key Words

Navigation