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Computations using the kinetic theory based IIT CFD code confirmed the elimination of the undesirable core-annular regime.
The gas phase turbulence was modeled using the k ε turbulent model and the particle phase was modeled using the kinetic theory of granular flow.
The Eulerian formulation can be realized using the kinetic theory of granular flows, which describes the physical properties of the particle phase.
The two-fluid model (TFM) is used as the governing equations, for which the solids stress is closed by using the kinetic theory of granular flow and the drag is closed by using the EMMS/matrix scheme.
The turbulent motion of the particulate phase is modeled using the kinetic theory for granular flow, and the gas phase turbulence is modeled using a sub-grid-scale model, cf. Ibsen et al. (Ind. Eng. Chem. Res. 40 (2001 50811).
The first particle model predicts the particle pressure by an exponential power law and assumes a constant particle viscosity (CPV), and the second model predicts the stresses using the kinetic theory of granular flow (KTGF).
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Using the kinetic-theory-based two-fluid models as a starting point, we develop filtered two-fluid models for a gas particle flow in the presence of an isothermal, first-order, solid-catalyzed reaction of a gaseous species.
If, for instance, we take the mathematics used in the kinetic theory of gases and reinterpret the terms of this calculus in a way that makes them refer to billiard balls, the billiard balls are a model of the kinetic theory of gases.
Using the molecular kinetic theory and statistical mechanics, we derived that the driving force of the vapor flux is the gradient of the incidence rate, which is defined as the number of molecules colliding a flat wall per unit surface area per unit time.
The governing equations for modelling the dense mixer flow have been closed by using closure relations from the kinetic theory of granular flow (KTGF) combined with frictional stress models.
Numerical simulations using two-fluid model incorporating the kinetic theory of granular flow (KTGF) are conducted to study the behavior of bed particles in a two dimensional baffle type internally circulating fluidized bed (ICFB).
More suggestions(15)
using the kinetic energy
using the instinct theory
using the Grounded theory
using the grey theory
using the same theory
using the kinetic activation-relaxation
using the kinetic model
using the entropy theory
using the kinetic pressure temperature
using the uniform theory
using the kinetic mode
using the kinetic lattice
using the kinetic force
using the kinetic control
using the extended theory
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