Experimental Investigation of Obstruction Effects on C 3 H 8 /H 2 Hybrid Fuel Explosion Dynamics in Semiconfined Pipelines
Institute of Chemical Technology · Culture Resource · +3 more institutions
Abstract
Mixtures in semiconfined pipelines through experimental methods. High-speed imaging and high-frequency pressure sensors were employed to simultaneously capture flame propagation dynamics and pressure field evolution. The results demonstrate that porous obstacles significantly alter flame propagation mechanisms. At blockage ratios exceeding 75%, flame acceleration becomes pronounced with propagation velocities increasing by 2-3 times, while flame fronts develop distinct turbulent characteristics. The overpressure evolution exhibits a three-stage pattern, reaching peak values at 87% blockage ratio before declining with further increases. Pressure waves display significant reflection and superposition effects…
Citation impact
- FWCI
- 212.76
- Percentile
- 100%
- References
- 60
Authors
6- ZQZhenglong Qiao
Institute of Chemical Technology, Culture Resource, Jilin University of Chemical Technology
- YLYang LiCorresponding
Institute of Chemical Technology, Jilin University of Chemical Technology, Nano Carbon (Poland)
- QMQianfei Miao
Institute of Chemical Technology, Culture Resource, Jilin University of Chemical Technology
- HMHeng Ma
Liaoning Technical University
- LXLiangfei Xu
Institute of Chemical Technology, Culture Resource, Jilin University of Chemical Technology
Topics & keywords
- Pipeline transport
- Materials science
- Nuclear engineering
- Environmental science
- Engineering
- Affordable and clean energy