Mp. Strongin et Kb. Koshelev, MATHEMATICAL-MODELING OF NONSTATIONARY EFFECTS AT FLOW AROUND A SINGLE BURNING PARTICLE, Combustion, explosion, and shock waves, 29(3), 1993, pp. 365-368
The behavior of the resistance and heat-exchange coefficients is exami
ned for an evaporating spherical particle in reacting high-temperature
flow on the basis of numerical solution of nonstationary Navier-Stoke
s equations. It is shown that during the process of flow transition to
a steady state the obtaining (in the presence of chemical reaction) o
f the negative resistance coefficient is possible. It is noted that in
the nonstationary case the appearance of an intense chemical reaction
zone behind the back surface of the spherical particle excites the pr
essure wave, the travel of which through the particle results in subst
antial oscillations of the resistance coefficient and, to a lesser deg
ree, of the heat-exchange coefficient.