All Stories

  1. Mass and heat transfer resistivities at liquid–vapor interfaces: Beyond the ideal gas
  2. Nonlinear mass and heat transfer across liquid-vapor interfaces
  3. 13-moment-equations from nonequilibrium thermodynamics and kinetic theory: Comparison for non-linear one-dimensional flows
  4. Heat and mass transfer across the vapor–liquid interface: A comparison of molecular dynamics and the Enskog–Vlasov kinetic model
  5. Temperature dependent Korteweg stress coefficient from the Enskog–Vlasov equation
  6. An Instructive CO2 Adsorption Model for DAC: Wave Solutions and Optimal Processes
  7. Heat transfer and evaporation processes from the Enskog-Vlasov equation and its moment equations
  8. Nonequilibrium liquid-vapor interfaces: Linear and nonlinear descriptions
  9. Erratum: “Thermodynamically admissible 13-moment equations” [Phys. Fluids 34, 017105 (2022)]
  10. Mathematical Modeling of Spherical Shell-Type Pattern of Tumor Invasion
  11. Twenty-six moment equations for the Enskog–Vlasov equation
  12. Thermodynamic loss analysis of a liquid-sorbent direct air carbon capture plant
  13. Thermodynamically admissible 13-moment equations
  14. Are waves with negative spatial damping unstable?
  15. Entropy and the Second Law of Thermodynamics—The Nonequilibrium Perspective
  16. Formulation of moment equations for rarefied gases within two frameworks of non-equilibrium thermodynamics: RET and GENERIC
  17. Modeling of Fuel Cell Cold Start and Dimension Reduction Simplification Method
  18. Efficiencies and Work Losses for Cycles Interacting with Reservoirs of Apparent Negative Temperatures
  19. Modeling, simulation and optimization of a pressure retarded osmosis power station
  20. Modeling and simulation of the dual stage pressure retarded osmosis systems
  21. Grad’s 13 moments approximation for Enskog-Vlasov equation
  22. R13 moment equations applied to supersonic flow with solid wall interaction
  23. Coupled constitutive relations: a second law based higher-order closure for hydrodynamics
  24. Evaporation Boundary Conditions for the Linear R13 Equations Based on the Onsager Theory
  25. Work Storage in States of Apparent Negative Thermodynamic Temperature
  26. Evaporation boundary conditions for the R13 equations of rarefied gas dynamics
  27. Assessment and development of the gas kinetic boundary condition for the Boltzmann equation
  28. Publisher’s Note: “Different variants of R13 moment equations applied to the shock-wave structure” [Phys. Fluids 29, 037105 (2017)]
  29. Different variants of R13 moment equations applied to the shock-wave structure
  30. Large scale energy storage using multistage osmotic processes: approaching high efficiency and energy density
  31. kinetic and macroscopic model of rarefied polyatomic gases
  32. A moment model for phonon transport at room temperature
  33. Regularized moment equations for binary gas mixtures: Derivation and linear analysis
  34. DSMC and R13 modeling of the adiabatic surface
  35. Thermodynamically admissible boundary conditions for the regularized 13 moment equations
  36. Multistage Pressure-Retarded Osmosis
  37. A moment model for phonon transport at room temperature
  38. Evaporation/condensation boundary conditions for the regularized 13 moment equations
  39. Heat transfer in polyatomic gases
  40. Preface: 30th International Symposium on Rarefied Gas Dynamics
  41. The analysis of different variants of R13 equations applied to the shock-wave structure
  42. Thermal stress vs. thermal transpiration: A competition in thermally driven cavity flows
  43. Velocity dependent Maxwell boundary conditions in DSMC
  44. Refined Navier-Stokes-Fourier Equations for Rarefied Polyatomic Gases
  45. A numerical study of the heat transfer through a rarefied gas confined in a microcavity
  46. Capturing non-equilibrium phenomena in rarefied polyatomic gases: A high-order macroscopic model
  47. Kinetic model and moment method for polyatomic gases
  48. Thermodynamics and Energy Conversion
  49. Maxwell boundary condition and velocity dependent accommodation coefficient
  50. Moment model and boundary conditions for energy transport in the phonon gas
  51. Regularized 13 moment equations for hard sphere molecules: Linear bulk equations
  52. A robust numerical method for the R13 equations of rarefied gas dynamics: Application to lid driven cavity
  53. Analysis of temperature difference driven heat and mass transfer in the Phillips–Onsager cell
  54. Trends in thermodynamics and materials theory
  55. Temperature-difference-driven mass transfer through the vapor from a cold to a warm liquid
  56. Heat transfer in micro devices packaged in partial vacuum
  57. Numerical solution of the moment equations using kinetic flux-splitting schemes
  58. Poiseuille flow of moderately rarefied gases in annular channels
  59. Regularized 13 moment equations for hard spheres
  60. Unique moment set from the order of magnitude method
  61. Resonance in rarefied gases
  62. Macroscopic transport models for rarefied gas flows: a brief review
  63. Poiseuille Flow of Rarefied Gases Between Concentric Cylinders
  64. Analytical and Numerical Solutions of Boundary Value Problems for the Regularized 13 Moment Equations
  65. Interface model for non-equilibrium evaporation
  66. An extended macroscopic transport model for rarefied gas flows in long capillaries with circular cross section
  67. Comment on “Thermodynamically Admissible 13 Moment Equations from the Boltzmann Equation”
  68. Rarefaction effects in thermally-driven microflows
  69. Hybrid membrane/cryogenic separation of oxygen from air for use in the oxy-fuel process
  70. Effects of rarefaction in microflows between coaxial cylinders
  71. Inconsistency of a dissipative contribution to the mass flux in hydrodynamics
  72. Macroscopic description of steady and unsteady rarefaction effects in boundary value problems of gas dynamics
  73. Switching criteria for hybrid rarefied gas flow solvers
  74. Modeling Micro Mass and Heat Transfer for Gases Using Extended Continuum Equations
  75. Couette and Poiseuille microflows: Analytical solutions for regularized 13-moment equations
  76. Coupled Proton and Water Transport in Polymer Electrolyte Membranes
  77. Erratum: Higher-order effects in rarefied channel flows [Phys. Rev. E78, 046301 (2008)]
  78. Higher-order effects in rarefied channel flows
  79. Thermodynamics of pore wetting and swelling in Nafion
  80. REGULARIZATION AND BOUNDARY CONDITIONS FOR THE 13 MOMENT EQUATIONS
  81. Linear kinetic heat transfer: Moment equations, boundary conditions, and Knudsen layers
  82. What does an ideal wall look like?
  83. Boundary conditions for Grad's 13 moment equations
  84. Boundary conditions for regularized 13-moment-equations for micro-channel-flows
  85. External losses in high-bypass turbo fan air engines
  86. Gas Micro-Flow Modelling Based on Regularized 13-Moment-Equations
  87. Higher Order Bulk and Boundary Effects in Channel Flows
  88. HTheorem, Regularization, and Boundary Conditions for Linearized 13 Moment Equations
  89. Thermodynamic considerations on the stability of water in Nafion
  90. Bulk equations and Knudsen layers for the regularized 13 moment equations
  91. A linearization of Mieussens's discrete velocity model for kinetic equations
  92. The Mathematical Procedure of Coarse Graining: From Grad’s Ten‐Moment Equations to Hydrodynamics
  93. Comparing macroscopic continuum models for rarefied gas dynamics: A new test method
  94. Scaling and Expansion of Moment Equations in Kinetic Theory
  95. Ellipsoidal statistical Bhatnagar–Gross–Krook model with velocity-dependent collision frequency
  96. Failures of the Burnett and super-Burnett equations in steady state processes
  97. Macroscopic Transport Equations for Rarefied Gas Flows
  98. Transport Phenomena in Polymer Electrolyte Membranes
  99. Transport Phenomena in Polymer Electrolyte Membranes
  100. Derivation of 13 Moment Equations for Rarefied Gas Flow to Second Order Accuracy for Arbitrary Interaction Potentials
  101. Mean evaporation and condensation coefficients based on energy dependent condensation probability
  102. Stable transport equations for rarefied gases at high orders in the Knudsen number
  103. Regularized 13-moment equations: shock structure calculations and comparison to Burnett models
  104. Numerical comparison of Bhatnagar–Gross–Krook models with proper Prandtl number
  105. Burnett equations for the ellipsoidal statistical BGK model
  106. Regularization of Grad’s 13 moment equations: Derivation and linear analysis
  107. Explicit fluxes and productions for large systems of the moment method based on extended thermodynamics
  108. Grad’s Moment Equations for Microscale Flows
  109. Heat transfer in the transition regime: Solution of boundary value problems for Grad’s moment equations via kinetic schemes
  110. A model for kinetically controlled internal phase segregation during aerosol coagulation
  111. Positivity of Entropy Production Chapman-Enskog Expansion and Phase Density in the
  112. Temperature jump and velocity slip in the moment method
  113. Extended moment method for electrons in semiconductors
  114. Kinetic schemes and boundary conditions for moment equations
  115. Moment equations for electrons in semiconductors: comparison of spherical harmonics and full moments
  116. The BGK model for an ideal gas with an internal degree of freedom
  117. Struchtrup and Weiss Reply:
  118. Maximum of the Local Entropy Production Becomes Minimal in Stationary Processes
  119. On the Number of Moments in Radiative Transfer Problems
  120. Projected moments in relativistic kinetic theory
  121. Extended Thermodynamics of Phonons
  122. Extended Thermodynamics of Radiation
  123. An Extended Moment Method in Radiative Transfer: The Matrices of Mean Absorption and Scattering Coefficients
  124. The BGK-model with velocity-dependent collision frequency
  125. Heat pulse experiments revisited
  126. Model Reduction in Kinetic Theory