TY - JOUR
T1 - Self-regulated compression and expansion effect on spray and mixing of a vibration gasoline combustor under ignition fluctuation
AU - Li, Ye
AU - Qin, Zhaoju
AU - Tian, Xiaoguang
AU - Zhang, Weizheng
AU - Yuan, Chenheng
N1 - Publisher Copyright:
© 2026 Elsevier Ltd.
PY - 2026/11/15
Y1 - 2026/11/15
N2 - As a new type of combustor, the asymmetric vibrating combustor (AVC) converts thermal and electrical energy through mechanical vibration. However, the effect of ignition position (IP) on AVC fuel spray and mixing remains unexplored. This paper presents a novel full-cycle coupling model that integrates vibration, spray, mixing, ignition, and combustion, and proposes an iterative algorithm to capture the strong coupling between piston dynamics and combustion. Using this model, IP values from 0 to 5 mm are investigated. The results reveal a nonlinear first-improve-then-deteriorate trend: at IP = 3 mm, the in-cylinder conditions are optimal, yielding the largest fuel evaporation, minimal wall impingement, smallest Sauter mean diameter, and the most uniform equivalence ratio distribution (MUI: 83 % in-cylinder, 98.1 % near the spark plug). The key contribution is the identification of IP = 3 mm as the position that achieves the best balance between spray atomization, mixture uniformity, and ignition reliability within the investigated range, thereby improving combustion stability.
AB - As a new type of combustor, the asymmetric vibrating combustor (AVC) converts thermal and electrical energy through mechanical vibration. However, the effect of ignition position (IP) on AVC fuel spray and mixing remains unexplored. This paper presents a novel full-cycle coupling model that integrates vibration, spray, mixing, ignition, and combustion, and proposes an iterative algorithm to capture the strong coupling between piston dynamics and combustion. Using this model, IP values from 0 to 5 mm are investigated. The results reveal a nonlinear first-improve-then-deteriorate trend: at IP = 3 mm, the in-cylinder conditions are optimal, yielding the largest fuel evaporation, minimal wall impingement, smallest Sauter mean diameter, and the most uniform equivalence ratio distribution (MUI: 83 % in-cylinder, 98.1 % near the spark plug). The key contribution is the identification of IP = 3 mm as the position that achieves the best balance between spray atomization, mixture uniformity, and ignition reliability within the investigated range, thereby improving combustion stability.
KW - Asymmetric vibrating combustor
KW - Ignition position
KW - Mixture formation
KW - Spray characteristics
UR - https://www.scopus.com/pages/publications/105045960428
U2 - 10.1016/j.enconman.2026.121995
DO - 10.1016/j.enconman.2026.121995
M3 - Article
AN - SCOPUS:105045960428
SN - 0196-8904
VL - 368
JO - Energy Conversion and Management
JF - Energy Conversion and Management
M1 - 121995
ER -