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Such comparisons based on numerical solutions of simple one dimensional slab problems indicate the the potential superiority of the new estimators for a wide variety of more general transport problems.
Based on numerical solutions of the balance equations accurate empirical correlations for filmwise condensation in forced convection flow over a horizontal flat plate are presented.
One is based on numerical solutions of the Fokker Planck equation, and the other is based on an integral equation, which is fulfilled by the interspike interval probability density.
In the present study, the interaction between the structural elements is described by means of a non-linear spring-damper model which is based on numerical solutions of the full EHL contact problem.
A comparison between conventional slope determination method, Geothermal Properties Measurement (GPM) data evaluation software based on numerical solutions to the differential equations governing the heat transfer processes and two variable-parameter fitting was performed in order to calculate the thermal conductivity and borehole thermal resistance.
To take into account the liquid bridge force between particles and between a particle and a wall, a regression expression for the liquid bridge force was developed as a function of the dimensionless liquid bridge volume and the separation distance based on numerical solutions of the Laplace Young equation.
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The approach proposed is based on numerical solution (for both the displacements and peristatic stresses) for one heterogeneity inside infinite homogeneous bar loaded by a pair of self-equilibrated concentrated remote forces.
This equation is based on numerical solution and is obtained for a power law fluid with yield stress.
The conventional methods of power system analysis are based on numerical solution of system differential algebraic equations.
The 3D simulation model is based on numerical solution of exact elasticity equation.
The method, based on numerical solution of momentum, energy and concentration equations in time and space using an algebraic turbulence closure for subscale (unresolved) motion, can account for terrain topography and dynamics of meteorological conditions.
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