Affiliation:
1. School of Power and Energy, Northwestern Polytechnical University, Xi'an, Shaanxi
Abstract
In order to shorten the 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 chamber (U-PDC) 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?m ~ 152.9?m, after the modification of the injector
atomization size range of 76.4 ~ 107.2?m, atomization size than before the
modification is significantly reduced; U-PDC using the injector before and
after the modification can achieve stable operation in the range of 10 ~
30Hz, and the DDT distance shortened with the increase in frequency. At an
operating frequency of 30Hz, the DDT distance of U-PDC with the injector
before modification is about 676mm, and the DDT distance of U-PDC with
injector after modification is shortened by 8.9% to about 616mm. 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.
Publisher
National Library of Serbia
Subject
Renewable Energy, Sustainability and the Environment