Title of article :
Effects of geometrical parameters on the performance of a cold gas micronozzle
Author/Authors :
Heydari، Mohammad Mahdy نويسنده is a Professor of Mechanical Engineering at Malek Ashtar University of Technology, ,
Issue Information :
دوماهنامه با شماره پیاپی 0 سال 2016
Abstract :
The area of the exit and throat region of a nozzle play a crucial role in
its design. This paper is a report of numerical simulations carried out to investigate the
in
uence of these parameters on the performance factors of an axisymmetric cold gas nozzle
of micron-size throat diameter. It was assumed that the deviations of the
ow behavior
from that of a continuum
ow can be taken care of by applying the rst-order slip boundary
conditions at the wall. The solution methodology includes a nite-volume-based numerical
procedure based on structured quadrilateral grids. A parametric study reveals that to
reach the highest values of the thrust and specic impulse, one should choose a nozzle
with the highest possible throat diameter. However, by increasing the outlet diameter, the
thrust initially reaches a maximum and then decreases. In these conditions, the specic
impulse is always a decreasing function of the outlet diameter of the micronozzle. It is also
observed that the mass
ow rate is an increasing function of both the throat and outlet
diameters. In addition, the comparison of the results with and without slip velocity shows
that the amounts of the mass
ow rate, thrust force, and specic impulse are higher when
the rarefaction eects are taken into account. Nevertheless, no fundamental dierence is
observed in
ow physics with and without slip velocity.
Journal title :
Scientia Iranica(Transactions B:Mechanical Engineering)
Journal title :
Scientia Iranica(Transactions B:Mechanical Engineering)