Current status of Lattice Boltzmann Methods applied to aerodynamic, aeroacoustic, and thermal flows
We present a review of the evolutionary advancement of the lattice Boltzmann methods
(LBM) and current status of their applications in dealing with diverse flow problems such as …
(LBM) and current status of their applications in dealing with diverse flow problems such as …
Numerics of the lattice Boltzmann method: Effects of collision models on the lattice Boltzmann simulations
We conduct a comparative study to evaluate several lattice Boltzmann (LB) models for
solving the near incompressible Navier-Stokes equations, including the lattice Boltzmann …
solving the near incompressible Navier-Stokes equations, including the lattice Boltzmann …
A review of the methods of modeling multi-phase flows within different microchannels shapes and their applications
In industrial processes, the microtechnology concept refers to the operation of small devices
that integrate the elements of operational and reaction units to save energy and space. The …
that integrate the elements of operational and reaction units to save energy and space. The …
Investigation of dual-phase-lag heat conduction model in a nanoscale metal-oxide-semiconductor field-effect transistor
This paper investigates the numerical simulation of non-Fourier transient heat transfer in a
two-dimensional sub-100nm metal-oxide-semiconductor field-effect transistor (MOSFET) …
two-dimensional sub-100nm metal-oxide-semiconductor field-effect transistor (MOSFET) …
Macro-to nanoscale heat and mass transfer: the lagging behavior
The classical model of the Fourier's law is known as the most common constitutive relation
for thermal transport in various engineering materials. Although the Fourier's law has been …
for thermal transport in various engineering materials. Although the Fourier's law has been …
Lattice Boltzmann methods for industrial applications
We present an overview of recent advancements and potentialities for industrial applications
of lattice Boltzmann methods (LBMs). Various processes and phenomena with industrial …
of lattice Boltzmann methods (LBMs). Various processes and phenomena with industrial …
[HTML][HTML] A novel SPH method for the solution of dual-phase-lag model with temperature-jump boundary condition in nanoscale
This paper proposes a newly developed smoothed-particle hydrodynamics (SPH) method
for the solution of one-dimensional heat conduction problem within a nanoscale thin slab for …
for the solution of one-dimensional heat conduction problem within a nanoscale thin slab for …
Investigation of 2D transient heat transfer under the effect of dual-phase-lag model in a nanoscale geometry
Analytical and numerical solutions of the 2D transient dual-phase-lag (DPL) heat conduction
equation are presented in this article. The geometry is that of a simplified metal oxide …
equation are presented in this article. The geometry is that of a simplified metal oxide …
Monte-Carlo parallel simulation of phonon transport for 3D silicon nano-devices
Due to the importance of the transistors in nano-electronics technology, the accurate study of
these nano-devices is an essential field of research. Taking into account the non-Fourier …
these nano-devices is an essential field of research. Taking into account the non-Fourier …
High accuracy numerical solutions of the Boltzmann Bhatnagar-Gross-Krook equation for steady and oscillatory Couette flows
YW Yap, JE Sader - Physics of Fluids, 2012 - pubs.aip.org
Modeling gas flows generated by micro-and nano-devices often requires the use of kinetic
theory. To facilitate implementation, various approximate formulations have been proposed …
theory. To facilitate implementation, various approximate formulations have been proposed …