We investigate sound wave propagation in a monatomic gas using a volume-based hydrodynamic model. In reference [1], a microscopic volume-based kinetic approach was proposed by analyzing molecular spatial distributions; this led to a set of hydrodynamic equations incorporating a mass-density diffusion component. Here we find that these new mass-density diffusive flux and volume terms mean that our hydrodynamic model, uniquely, reproduces sound wave phase speed and damping measurements with excellent agreement over the full range of Knudsen number. In the high Knudsen number (high frequency) regime, our volume-based model predictions agree with the plane standing waves observed in the experiments, which existing kinetic and continuum models have ...
Absorption and Dispersion of Ultrasonic Waves focuses on the influence of ultrasonics on molecular p...
Asymptotic and numerical analyses are presented for the travelling wave solution of the one-dimensio...
Spectra or decay rates of spatial fluctuations are calculated from mean-field theory or Boltzmann's ...
We investigate sound wave propagation in a monatomic gas using a volume-based hydrodynamic model. In...
Predicting sound wave dispersion in monatomic gases is a fundamental gas flow problem in rarefied ga...
Molecular simulations of sound waves propagating in a dilute hard sphere gas have been performed usi...
We use discrete kinetic models to study the dispersion relations of the one-dimensional plane-ultras...
Contains reports on three research projects.U. S. Navy (Office of Naval Research) under Contract N00...
Sound wave propagation in rarefied monatomic gases is simulated using a newly developed unified gask...
A model has been developed which yields the speed and attenuation of acoustic waves as a function ol...
The system of hydrodynamic-type equations is derived from Alexeev's generalized Boltzmann kinetic eq...
The lattice Boltzmann method has been widely used as a solver for incompressible flow, though it is ...
Sound wave propagation in argon gas is simulated usingmolecular dynamics (MD) in order to determine ...
The growth of bubbles in cosmological first-order phase transitions involves nontrivial hydrodynamic...
Howard Brenner has recently proposed modifications to the Navier-Stokes equations that relate to a d...
Absorption and Dispersion of Ultrasonic Waves focuses on the influence of ultrasonics on molecular p...
Asymptotic and numerical analyses are presented for the travelling wave solution of the one-dimensio...
Spectra or decay rates of spatial fluctuations are calculated from mean-field theory or Boltzmann's ...
We investigate sound wave propagation in a monatomic gas using a volume-based hydrodynamic model. In...
Predicting sound wave dispersion in monatomic gases is a fundamental gas flow problem in rarefied ga...
Molecular simulations of sound waves propagating in a dilute hard sphere gas have been performed usi...
We use discrete kinetic models to study the dispersion relations of the one-dimensional plane-ultras...
Contains reports on three research projects.U. S. Navy (Office of Naval Research) under Contract N00...
Sound wave propagation in rarefied monatomic gases is simulated using a newly developed unified gask...
A model has been developed which yields the speed and attenuation of acoustic waves as a function ol...
The system of hydrodynamic-type equations is derived from Alexeev's generalized Boltzmann kinetic eq...
The lattice Boltzmann method has been widely used as a solver for incompressible flow, though it is ...
Sound wave propagation in argon gas is simulated usingmolecular dynamics (MD) in order to determine ...
The growth of bubbles in cosmological first-order phase transitions involves nontrivial hydrodynamic...
Howard Brenner has recently proposed modifications to the Navier-Stokes equations that relate to a d...
Absorption and Dispersion of Ultrasonic Waves focuses on the influence of ultrasonics on molecular p...
Asymptotic and numerical analyses are presented for the travelling wave solution of the one-dimensio...
Spectra or decay rates of spatial fluctuations are calculated from mean-field theory or Boltzmann's ...