Sound wave propagation in rarefied molecular gases
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Publication:6080297
DOI10.1017/JFM.2023.698MaRDI QIDQ6080297
Yonghao Zhang, Wei Su, Unnamed Author
Publication date: 30 October 2023
Published in: Journal of Fluid Mechanics (Search for Journal in Brave)
Cites Work
- The study of sound wave propagation in rarefied gases using unified gas-kinetic scheme
- The linearized Boltzmann equation: sound-wave propagation in a rarefied gas
- Onsager-Casimir reciprocal relations based on the Boltzmann equation and gas-surface interaction. Gaseous mixtures
- A convergence proof for Bird's direct simulation Monte Carlo method for the Boltzmann equation
- Molecular extended thermodynamics: comparison between rarefied polyatomic and monatomic gas closures
- Unified gas-kinetic scheme for diatomic molecular flow with translational, rotational, and vibrational modes
- A generalized form of the Bernoulli trial collision scheme in DSMC: derivation and evaluation
- Multiscale simulation of molecular gas flows by the general synthetic iterative scheme
- Shock wave structure for polyatomic gases with large bulk viscosities
- The influence of vibrational state-resolved transport coefficients on the wave propagation in diatomic gases
- Implicit discontinuous Galerkin method for the Boltzmann equation
- Nonlinear Standing and Resonantly Forced Oscillations in a Tube with SlowlyChanging Length
- Rarefaction effects on shear driven oscillatory gas flows: A direct simulation Monte Carlo study in the entire Knudsen regime
- Sound wave propagation in transition-regime micro- and nanochannels
- Reciprocal Relations in Irreversible Processes. II.
- Oscillatory rarefied gas flow inside rectangular cavities
- Extraction of the translational Eucken factor from light scattering by molecular gas
- Uncertainty quantification in rarefied dynamics of molecular gas: rate effect of thermal relaxation
- Nonplanar oscillatory shear flow: From the continuum to the free-molecular regime
- Sound propagation through a rarefied gas confined between source and receptor at arbitrary Knudsen number and sound frequency
- Kinetic modelling of rarefied gas flows with radiation
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