The thermal and chemical effects of one-dimensional, premixed hydrogen flames quenching against a single surface are studied numerically using a detailed chemical mechanism. The results for stoichiometric H 2 – O 2 flames impinging on a 750 K inert wall agree qualitatively with prior published results. Other wall boundary conditions studied include an adiabatic wall and isothermal walls with temperatures ranging from 298 to 1200 K. Chemical pathway analysis of the detailed hydrogen mechanism reveals the growing importance of radical recombination reactions near the inert walls for increasing wall temperature. Implementation of a H, O, and OH radical sink at the surface of a 750 K isothermal wall results in significantly lower heat generatio...
The thermal and chemical effects of a one-dimensional, premixed flame quenching against a single sur...
The thermal and chemical effects of a one-dimensional, premixed flame quenching against a single sur...
The thermal and chemical effects of a one-dimensional, premixed flame quenching against a single sur...
The thermal and chemical effects of one-dimensional, premixed hydrogen flames quenching against a si...
The thermal and chemical effects of one-dimensional, premixed hydrogen flames quenching against a si...
The thermal and chemical effects of one-dimensional, premixed hydrogen flames quenching against a si...
This paper provides a comparison of wall heat fluxes and quenching distances as one-dimensional hydr...
This paper provides a comparison of wall heat fluxes and quenching distances as one-dimensional hydr...
This paper provides a comparison of wall heat fluxes and quenching distances as one-dimensional hydr...
This paper provides a comparison of wall heat fluxes and quenching distances as one-dimensional hydr...
This paper provides a comparison of wall heat fluxes and quenching distances as one-dimensional hydr...
This paper provides a comparison of wall heat fluxes and quenching distances as one-dimensional hydr...
A laminar one-dimensional hydrogen-air flame travelling and quenching towards a chemically inert per...
The process of flame-wall interaction for premixed methane-air flames is investigated by direct nume...
A laminar one-dimensional hydrogen-air flame travelling and quenching towards a chemically inert per...
The thermal and chemical effects of a one-dimensional, premixed flame quenching against a single sur...
The thermal and chemical effects of a one-dimensional, premixed flame quenching against a single sur...
The thermal and chemical effects of a one-dimensional, premixed flame quenching against a single sur...
The thermal and chemical effects of one-dimensional, premixed hydrogen flames quenching against a si...
The thermal and chemical effects of one-dimensional, premixed hydrogen flames quenching against a si...
The thermal and chemical effects of one-dimensional, premixed hydrogen flames quenching against a si...
This paper provides a comparison of wall heat fluxes and quenching distances as one-dimensional hydr...
This paper provides a comparison of wall heat fluxes and quenching distances as one-dimensional hydr...
This paper provides a comparison of wall heat fluxes and quenching distances as one-dimensional hydr...
This paper provides a comparison of wall heat fluxes and quenching distances as one-dimensional hydr...
This paper provides a comparison of wall heat fluxes and quenching distances as one-dimensional hydr...
This paper provides a comparison of wall heat fluxes and quenching distances as one-dimensional hydr...
A laminar one-dimensional hydrogen-air flame travelling and quenching towards a chemically inert per...
The process of flame-wall interaction for premixed methane-air flames is investigated by direct nume...
A laminar one-dimensional hydrogen-air flame travelling and quenching towards a chemically inert per...
The thermal and chemical effects of a one-dimensional, premixed flame quenching against a single sur...
The thermal and chemical effects of a one-dimensional, premixed flame quenching against a single sur...
The thermal and chemical effects of a one-dimensional, premixed flame quenching against a single sur...