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The design of the targets were based on computational flow dynamics, ionization mechanism and empirical optimization.
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Herein, we propose a closure of the volume- and time-averaged (macroscopic) turbulence, and non-equilibrium turbulent heat and mass transfer equations for randomly packed spheres, based on computational results of flow and heat transfer for a unique geometric model.
The methods used are based on Computational Fluid Dynamics (CFD) flow simulations and analysis.
In the present computational fluid dynamics (CFD) community, post-processing is regarded as a procedure to view parameter distribution, detect characteristic structure and reveal physical mechanism of fluid flow based on computational or experimental results.
The operation parameters of different flow rates regarding sample flow velocity, side flow velocity, and sheath flow velocity were established based on computational fluid dynamics (CFD) simulation results.
The analysis is based on computational fluid dynamics model of reacting fluid flow accounting for interactions in flow, species, and conjugate thermal field in fluid and solid.
Another main focus of this work lies in the mathematical modeling of the flow field based on computational fluid dynamics (CFD) methods.
Based on computational fluid dynamics (CFD) simulations of fluid flow and heat transfer in the cooling plates, the cooling performance of the six serpentine channel designs is evaluated.
In order to optimize aeration in the activated sludge processes, an experimentally validated numerical tool, based on computational fluid dynamics and able to predict flow and oxygen transfer characteristics in aeration tanks equipped with fine bubble diffusers and axial slow speed mixers, is proposed.
The work was based on computational fluid dynamics for simulating non-Newtonian melt flow and corresponding temperature fields.
We developed new, approximate models for pressure in horizontal wells based on Computational Fluid Dynamics (CFD) modeling of coupled well/reservoir flow.
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