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In this work, the influence of the cylindrical height on the flow field, pressure drop and separation performances within a uniflow hydrocyclone will be studied numerically using Computational Fluid Dynamics "CFD".
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The regional contaminated porous field is studied numerically using simulation software MODEFLOW and M3DMS.
In this work a horizontal rotating solar calcinator is studied numerically using computational fluid dynamics.
A similar column model was studied numerically using the finite element method and the ABAQUS software.
The incompressible, single-phase and multiphase, isothermal and steady-state flows in a U-bend are studied numerically using FLUENT 6.0.
The thermal conditions of the atrium space have been studied numerically using the Reynolds Averaged Navier-Stokes (RANS) modeling approach.
Diesel/natural gas dual-fuel engines were studied numerically using Latin hypercube sampling (LHS) and multi-objective Pareto optimization.
The buckling behaviour of the CFRP cylindrical shells was studied numerically using ABAQUS (Version 6.10), a general-purpose finite element program with linear static capabilities (Onoda 1985).
Unsteady flow of thin Cu-water nanoliquid film over a horizontal rotating disk is studied numerically using finite difference technique under the assumption of planar interface.
Packed bed reactors with moderate tube-to-particle diameter ratios are studied numerically using the computational fluid dynamics approach.
The effects of gravity on a phase separator are studied numerically using an Eulerian/Lagrangian two-phase flow approach.
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