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Experimental study on the low-temperature ignition characteristics of RP-3 aviation kerosene impinging sprays

  • Beijing Institute of Technology
  • Beijing Aerospace Propulsion Institute

Research output: Contribution to journalArticlepeer-review

Abstract

RP-3 aviation kerosene shows great potential for enhancing diesel engine cold-starts, yet its low-temperature wall-impinging ignition behavior remains incompletely understood. Thus, the ignition characteristics were examined at ambient temperatures ( T amb) of 660–800 K in a constant volume combustion chamber (CVCC) using high-speed direct photography. Results indicate that the ignition delay time (IDT) of the RP-3 free spray decreases as T amb increases, but slightly increases at T amb = 780–800 K. For impinging sprays, the IDT decreases monotonically with increasing wall temperature ( T w). The ignition position is closer to the wall vertically, but exhibits a phase-dependent non-monotonic trend horizontally. For liquid-phase impingement, higher T w restricts film spreading, with ignition closer to the nozzle axis. For vapor-phase impingement ( T amb > 700 K), ignition initially shifts away from the axis due to enhanced radial spreading, but retreats toward it as the wall cooling effect significantly weakens ( T w = 473–523 K). At T amb < 800 K, the IDT increases as the wall distance ( D w) increases from 27 mm to 40 mm due to weakened air entrainment, but shortens at 50 mm via enhanced fuel-air premixing. Compared to the free spray, wall heat absorption delays impinging spray ignition at lower T w (423–473 K), but the IDTs of both sprays become nearly identical at T w = 523 K. Notably, at T w = 523 K and D w = 27 mm, rapid wall-film evaporation supplies additional gaseous fuel, lowering the critical ignition temperature of the impinging spray by 40 K compared to the free spray.

Original languageEnglish
Article number132061
JournalApplied Thermal Engineering
Volume302
DOIs
Publication statusPublished - Aug 2026
Externally publishedYes

Keywords

  • Ambient temperature
  • Low-temperature ignition
  • RP-3 aviation kerosene
  • Visualization testing
  • Wall distance
  • Wall temperature

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