Influence of boundary conditions on the structure of laminar boundary layer with hydrogen combustion on a permeable surface
β Scribed by E.P. Volchkov; V.V. Terekhov; V.I. Terekhov
- Publisher
- Elsevier Science
- Year
- 2009
- Tongue
- English
- Weight
- 359 KB
- Volume
- 52
- Category
- Article
- ISSN
- 0017-9310
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β¦ Synopsis
A numerical study was performed to examine how thermal and diffusion boundary conditions affect the structure of laminar diffusion flame in air flow with porous blowing and combustion of hydrogen. Boundary conditions of two types were compared, with lengthwise-constant porous-wall temperature (T W ΒΌ const throughout the whole range of blowing ratios), and with lengthwise-constant temperature of the fuel supplied into the main flow (T 0 ΒΌ const). With a liquid fuel having constant evaporating-surface temperature, we deal with boundary conditions of the first type. With a gas fuel, as a rule, we encounter the regime with T 0 ΒΌ const. It is shown that, in spite of the significant difference in velocity and temperature profiles, in both cases the surface friction coefficients have close values. Also, it is found that the wall heat flux exhibits a maximum if considered as a function of fuel supply intensity. Nonetheless, the function of relative heat transfer monotonically decreases with blowing intensity, much like it does in non-reactive flow.
π SIMILAR VOLUMES
## Abstract The behavior of laminar and turbulent boundary layers on a moving continuous cylindrical surface is investigated by the integral method, based on assumed velocity profiles that satisfy the appropriate boundary conditions. Equations for the characteristic boundaryβlayer parameters are pr