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The three-dimensional coupled implicit compressible Reynolds Averaged Navier Stokes (RANS) equations and perfect gas model with the specified effective specific heat ratio have been applied to numerically simulate the flow fields around the vehicle.
A simulation technique based on the discrete element method (DEM) has been applied to numerically model the bulk compression of beds of three oilseeds; canola, palm-kernel and soybean.
In the current study, the two-dimensional coupled implicit compressible Reynolds Averaged Navier Stokes and Menter's shear stress transport turbulence model have been applied to numerically simulate the flow fields of the single expansion ramp nozzle with and without energy deposition.
In this paper, the two-dimensional coupled implicit compressible Reynolds Averaged Navier Stokes (RANS) and Menter's shear stress transport (SST) turbulence model have been applied to numerically simulate the flow fields of the single expansion ramp nozzle (SERN) with and without energy addition.
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Three Seebeck coefficient models are applied to numerically and experimentally study the Thomson effect on TEC.
The model is applied to numerically simulate magnetically induced flow of electrolyte in a short duct.
The Ritz method is applied to numerically determine the natural frequencies and the mode shapes of finite cylinders.
In the present study, an FDF (Flame Describing Function -based approach is applied to numerically investigate the attenuation characteristics oFunction -basedplapproach
The mesoscopic roping model is applied to numerically analyze the roping propensity in an AA6016 aluminum metal sheet under uniaxial tensile testing.
The standard deviation and the range of path curve length distribution density are applied to numerically evaluate and analyze the trajectory distribution.
The presented algorithm in Section 4.3 is applied to numerically solve Eq. (41), for the three cases corresponding to (lambda =1,,2) and 3.51 which yield (theta =1.51716,,2.35755) and 4.66781, respectively.
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