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A new mesoscale simulation model for solids dissolution based on an computationally efficient and versatile digital modelling approach (DigiDiss) is considered and validated against analytical solutions and published experimental data for simple geometries.
An analytical structural model for solids and their surfaces, which would be the basis of such a system, is presented.
In this paper a mathematical model for solids flow in gas flowing solids fixed bed contactors is developed.
A mathematical model for solids suspension is also developed, in which the classification function is expressed as an exponential function of the particle size.
To develop an improved model for solids friction factor, an existing reliable pure dilute-phase model has been modified for dense-phase flow condition by incorporating sub-models for particle to actual gas velocity and impact and solids friction factor.
Similar(55)
We had previously presented a model for solid propellant decomposition in a combustion chamber.
An isotropic nonlinear viscoelastic constitutive model for solid propellant is proposed.
The objective of this work is to develop a coupled heat and mass transfer model for solid foams.
Results are also compared to simulation obtained from a mixture model for solid particles for the same flow conditions.
Sun et al. ([2011]) developed an inexact fuzzy-queue programming (IFQP) model for solid waste management under uncertainty, which integrates FQ model, interval-parameter programming, and fuzzy flexible programming.
A new comprehensive model for solid-state polycondensation (SSP) of polyethylene terephthalate (PET) has been developed, which interprets a number of hitherto unexplained observations.
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