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Peled, E. Advanced model for solid electrolyte interphase electrodes in liquid and polymer electrolytes.
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.
Being similar to drag model for solid spheres proposed by Michaelides, the developed drag correlation takes into account inertial and wall effects as their linear combination.
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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.
A new comprehensive model for solid-state polycondensation (SSP) of polyethylene terephthalate (PET) has been developed, which interprets a number of hitherto unexplained observations.
We propose a simplified analytical model for solid-beam lattices that provides insight into the mechanisms behind their observed stiffness, and we investigate different hollow-beam lattice parameters that give rise to their aberrant properties.
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.
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