Abstract

Smoldering wave propagation stationary regime via porous samples of dispersed biomaterials was investigated. It was shown, that at counterflow smoldering, under filtration oxidant supplement conditions, smoldering velocity and smoldering zone temperature dependences via incoming into reactor air flow speed have a maximum at Vп ~ 20 cm/s. Similarity of these dependences shows the fuel oxidation chemical reactions kinetics primary influence on smoldering process. Assuming that the heterogeneous substance scale is small and the conversion depth is complete, the problem of smoldering wave propagation velocity definition was solved.

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