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Then some canonical problems are solved to describe the behaviour of waves impinging on boundaries.
Model equations were proposed and solved to describe solubilization under the conditions of each type of experiment.
The model can be analytically solved to describe the probability distributions of TSS and TN concentrations as a function of increasing runoff depths.
The advantage of the SFM is that complex combustion chemistry can be taken into account at low computational effort because only two additional transport equations have to be solved to describe the chemistry in the reacting flow.
A three-dimensional model, considering mass, momentum, energy and charge conservation, was developed and the equations solved to describe the physico-chemical phenomena occurring within a single, micro-tubular hollow fibre solid oxide fuel cell (HF-SOFC).
Using this model, three-dimensional Navier Stokes equations and the Lagrangian particle motion equations are simultaneously solved to describe the high Reynolds number (Re=104) gas particle jet flow and the effect of particle existence on it.
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A complete breakthrough model is proposed and solved in this work to describe the removal of volatile organic compounds from a diluted single-component gas stream passing through a microporous activated carbon fiber monolith (ACFM) under isothermal conditions.
In this work, a generalized physicochemical model was developed and solved numerically to describe the nZVI transport through porous media under electric field, and with different electrolytes (with different ionic strengths).
A two-scale model is developed, and solved numerically, to describe the mechanical behavior of elastomers filled with hard nanoparticles.
A transient three-dimensional heat conduction model has been established and solved analytically to describe the temperature response in the ground caused by a single inclined line source.
A ring source model was established and solved analytically to describe the temperature variation of the ground caused by a spiral heat exchanger.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com