Thin-film boundary-layer diffusion of non-equilibrium flow to kinetically limited reactive surfaces via Damköhler thermochemistry tables
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Key Points
The proposed solution facilitates increased flexibility in modeling non-equilibrium flow near reactive surfaces, enhancing simulation accuracy.
Pre-tabulated solutions make it easier to study varying kinetics rates, beneficial for both simple air-carbon systems and complex materials.
Preliminary results indicate potential for further development in modeling finite-rate surface reactions, though uncertainties in extensibility remain.
This method offers an innovative approach by decoupling wall-gas conditions from equilibrium thermochemistry solvers.
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Implication
This method applies a new boundary-layer solution for diffusion to reactive surfaces, emphasizing finite-rate kinetics and non-equilibrium flow.