Zobrazeno 1 - 7
of 7
pro vyhledávání: '"Ann Zinoviev"'
Publikováno v:
Heat Transfer Research. 38:325-337
The problem of thermal explosion in a flammable gas mixture with addition of volatile fuel droplets is studied based on the asymptotic method of integral manifolds. The model for the radiative heating of droplets takes into account the semitransparen
Publikováno v:
Journal of Engineering Mathematics. 56:129-142
Recent experimental evidence has uncovered the peculiar behavior of certain gel droplets which, under appropriate ambient thermal conditions, evaporate and burn in an oscillatory fashion. In this work a preliminary foray is made into the theoretical
Publikováno v:
Applied Mathematics Letters. 18(8):897-903
A regime of low velocity deflagration in hydraulically resisted flows such as those occurring in porous beds is discussed. An asymptotic expression for the deflagration velocity is derived. The obtained dependency elucidates the mechanism controlling
Publikováno v:
Journal of Engineering Mathematics. 50:399-414
The problem of thermal explosion in a flammable gas mixture with addition of volatile fuel droplets is studied based on the asymptotic method of integral manifolds. The model for the radiative heating of droplets takes into account the semitransparen
Autor:
Igor Goldfarb, Ann Zinoviev
Publikováno v:
Physics Letters A. 311:491-500
The phenomenon of gaseous thermal explosion within inert insulation material filled with a combustible evaporating fuel is considered. A novel approach to estimate the activation energy is suggested using the available experimental data and the relev
Publikováno v:
IMA Journal of Applied Mathematics. 67:263-280
The phenomenon of gaseous thermal explosion in porous media filled with a combustible evaporating fuel is modelled using the spatially uniform approach. The proposed mathematical model including four highly nonlinear ordinary differential equations i
Publikováno v:
Combustion Theory and Modelling. 2:1-17
The dynamical behaviour of an isolated combustible gas bubble surrounded by unlimited inviscid liquid is analysed in the case of large activation energy and using spatially uniform assumptions. The pressure effect is crucial in this problem because o