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Depending on the desired level of resolution and available computational resources, the numerical model can either simulate, via direct numerical simulation (DNS), large-eddy simulation (LES), or unsteady Reynolds-averaged Navier Stokes (URANS) modeling.
We simulate via direct numerical simulations (DNS) the behavior of the flow field, concentration and electrical potential.
To simulate via UPPAAL our priority-based scheduling mechanism within VANET, we divide our system into four independent sub-systems, represented each by an automaton that we describe hereafter.
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Above: SDR vs HDR comparison, simulated (via YouTube).
The diffusion characteristic and local current distribution on 3DTNEEs were simulated via the COMSOL Multiphysics 4.4 simulative software.
However, the network is simulated via Gillespie's algorithm.
This capacity is simulated via Monte Carlo statistical method using (50).
The postbuckling behavior is also simulated via the numerical method.
Acceleration processes are simulated via a Matlab/Simulink program.
Not applicable, all data has been simulated via the algorithms described in the manuscript.
However, the network is simulated via the Gillespie's algorithm, with the rate constants set to.
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