Title of article :
Effects of higher wall roughness on dense particle–laden dispersion behaviors
Author/Authors :
Weihua Yang، نويسنده , , Xiangli Li، نويسنده , , Guohui Li، نويسنده , , Xinxiang Pan، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2013
Abstract :
To analyze the effects of higher wall roughness on dense particle–laden dispersion behaviors under reduced gravity environments, a dense gas–particle two-phase second-order-moment turbulent model are developed. In this model, the wall roughness function and the kinetic theory of granular flows are coupled and closed. Anisotropy of gas–solid two-phase stresses and the interaction between gas–particle are fully considered using two-phase Reynolds stress model and the two-phase correlation transport equation. Numerical simulation test is validated by Sommerfeld and Kussin (2003) experiments data with higher wall roughness 8.32 μm. Predicted results showed that the particle concentration distribution, particle fluctuation velocity, particle temperature and particle collision frequency are greatly affected by higher wall roughness, as well as particle Reynolds stress and interactions between gas and particle turbulent flows are redistributed. Under microgravity conditions, particle temperature and collision frequency are greatly less than those of earth and lunar gravity.
Keywords :
Dense particle–laden turbulence flows , Numerical simulation , Higher wall roughness , Second-order-moment stress model
Journal title :
Advanced Powder Technology
Journal title :
Advanced Powder Technology