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The viability of multiscale lattice Boltzmann schemes for the numerical simulation of turbulent flows is discussed and numerically demonstrated for turboaxial machine applications.
The sensor feasibility is numerically demonstrated via accurate simulations performed by employing a Finite Element Method (FEM) numerical code.
This original work theoretically and numerically demonstrated the feasibility of this type of synchronization.
For these problems, we have numerically demonstrated the superiority of the schemes derived in this paper.
Thermal boundary conditions for a doubled-populations BGK model are introduced and numerically demonstrated.
The present paper also numerically demonstrated the effectiveness of H2 active control.
The guided modes along the zigzag edge excited by a point source have been numerically demonstrated.
A gain-flattened tellurite-based fiber Raman amplifiers (T-FRA) is proposed and numerically demonstrated.
The tunable nano-modulators based on graphene plasmonic waveguide modulators have been proposed and numerically demonstrated [29].
The importance of higher-order approximations of pressure is discussed and numerically demonstrated.
It is numerically demonstrated that resonance transitioning orbits pass through the weak stability boundaries.
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