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The measurements indicated a uniform axial liquid velocity profile.
Primary liquid velocity, auxiliary liquid velocity, solids inventory and liquid viscosity are the input variables, called factors, which affects the system.
In the range of investigated solid concentration, liquid velocity exhibits close agreement at different solid concentrations.
Above 1% solid loading, liquid velocity effect over gas hold-up is negligible.
The liquid velocity was taken as 0.0066 and 0.1 m/s.
A similar change in decreasing trend was observed in the pressure gradient and liquid velocity profile.
The effect of the superficial liquid velocity on the overall rate constant was also studied.
The axial dispersion coefficient of the liquid phase increases monotonically with liquid velocity.
The rate was correlated to average liquid velocity at the free liquid surface.
Predicted liquid velocity and averaged gas hold-up are compared with the experimental data.
These parameters include ΔT, heat flux, liquid type, liquid velocity, and metallurgy of heat transfer surfaces.
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