All systems operational
Q1 2026

Study on the influence mechanism of geometric parameters of asymmetric fuel injectors on internal transient flow and cavitation characteristics

Chunjie Yang · Bin Zhao
10.1186/s44147-026-01053-z 377 Views 0 Citations
0
Citations
377
Views
Abstract

Abstract
In order to deeply analyze the influence of geometric parameters on the transient flow and cavitation characteristics inside asymmetric fuel injectors. Unlike previous steady-state analyses of symmetric nozzles, this research uniquely adopts a dynamic evolutionary perspective to capture the transient multiphase flow processes within a single injection event.. The evolution mechanism of pressure, velocity, gas phase volume fraction, and turbulence energy inside the nozzle under different geometric parameters was studied. The results show that increasing the nozzle diameter can increase the outlet flow velocity by 2.37% -3.27%, significantly enhance the cavitation effect, and reduce the average flow coefficient by about 9.3% -10%; Increasing the nozzle length will suppress the development of cavitation and reduce the outlet flow rate by 1.03% -1.69%; Increasing the inlet fillet radius can optimize the flow structure, increase the flow velocity by 1.68% -2.13%, increase the flow coefficient to 19.30%, and effectively suppress cavitation. The research results provide a theoretical basis for the performance of asymmetric fuel injectors.

Cite this Article (APA)
Chunjie, Y., Bin, Z. (2026). Study on the influence mechanism of geometric parameters of asymmetric fuel injectors on internal transient flow and cavitation characteristics. Journal of Engineering and Applied Science. https://doi.org/10.1186/s44147-026-01053-z
Related Papers
Carbonaceous filler and fiber hybridization for enhanced mechanical, thermal, and electrical propert…
Sathiyamoorthy Margabandu; Vinothkumar Harikrishnan; Manuel George; S Sathiyamur · 2026
3
cites
384
2
cites
384
Study of tribological and corrosion behavior of AA6061–SiC–WS₂/WSe₂ hybrid composites using the tagu…
Vijayasarathi Prabakaran; M Venkatasudhahar; Ravikumar Jayabal; Mary Nancy Flora · 2026
1
cites
383
Access
View Full Text via DOI
Published in
ISSN 1110-1903
Quartile Q1
AMS Score 100
Field Engineering & Technology
Publisher Cairo University, Faculty of Engine
Country 🇪🇬 Egypt
View Journal Profile →
Authors
Publication Details
Year 2026
Language English
Added 24 Aug 2026