TY - JOUR
T1 - INVESTIGATION ON THE EFFECT OF INJECTOR MODIFICATION ON INJECTOR ATOMIZATION AND U-BEND PULSE DETONATION COMBUSTION CHARACTERISTICS
AU - WANG, Dingding
AU - ZHENG, Longxi
AU - LU, Jie
AU - TAN, Wenhao
AU - LI, Qing
N1 - Publisher Copyright:
© (2024), (Serbian Society of Heat Transfer Engineers). All Rights Reserved.
PY - 2024
Y1 - 2024
N2 - In order to shorten the deflagration-to-detonation transition (DDT) distance of the pulse detonation combustion chamber, an experimental study of the effect of pneumatic atomization injector modification on atomization particle size amd gas-liquid two-phase U-bend pulse detonation combustion (U-PDC) chamber was carried out. Gasoline and air were used as fuel and oxidizer, and the atomization particle size was tested and the detonation characteristics of the U-PDC were obtained using the pneumatic atomization injector before and after the modification. The results show that the atomization size range of the injector before the modification is 111.6~152.9 μm, after the modification of the injector atomization size range of 76.4~107.2 μm, atomization size than before the modification is significantly reduced. The U-PDC using the injector before and after the modification can achieve stable operation in the range of 10~30 Hz, and the DDT distance shortened with the increase in frequency. At an operating frequency of 30 Hz, the DDT distance of U-PDC with the injector before modification is about 676 mm, and the DDT distance of U-PDC with injector after modification is shortened by 8.9% to about 616 mm. In addition, under the same operating conditions, due to the better atomization effect of the injector after modification, The fuel flow rate of U-PDC with the injector after modification is 5~10% smaller than that with the injector before modification when the average detonation pressure reaches its maximum value during the adjustment of fuel-flow.
AB - In order to shorten the deflagration-to-detonation transition (DDT) distance of the pulse detonation combustion chamber, an experimental study of the effect of pneumatic atomization injector modification on atomization particle size amd gas-liquid two-phase U-bend pulse detonation combustion (U-PDC) chamber was carried out. Gasoline and air were used as fuel and oxidizer, and the atomization particle size was tested and the detonation characteristics of the U-PDC were obtained using the pneumatic atomization injector before and after the modification. The results show that the atomization size range of the injector before the modification is 111.6~152.9 μm, after the modification of the injector atomization size range of 76.4~107.2 μm, atomization size than before the modification is significantly reduced. The U-PDC using the injector before and after the modification can achieve stable operation in the range of 10~30 Hz, and the DDT distance shortened with the increase in frequency. At an operating frequency of 30 Hz, the DDT distance of U-PDC with the injector before modification is about 676 mm, and the DDT distance of U-PDC with injector after modification is shortened by 8.9% to about 616 mm. In addition, under the same operating conditions, due to the better atomization effect of the injector after modification, The fuel flow rate of U-PDC with the injector after modification is 5~10% smaller than that with the injector before modification when the average detonation pressure reaches its maximum value during the adjustment of fuel-flow.
KW - DDT
KW - fuel atomization
KW - fuel consumption rate
KW - pneumatic atomization injector
KW - pulse detonation combustion chamber
UR - http://www.scopus.com/inward/record.url?scp=85192185190&partnerID=8YFLogxK
U2 - 10.2298/TSCI230513203W
DO - 10.2298/TSCI230513203W
M3 - 文章
AN - SCOPUS:85192185190
SN - 0354-9836
VL - 28
SP - 1729
EP - 1739
JO - Thermal Science
JF - Thermal Science
IS - 2C
ER -