Zobrazeno 1 - 10
of 20
pro vyhledávání: '"Paolo Barbante"'
Publikováno v:
AIAA Journal. 58:278-290
The interplay of a gas–surface interaction and thermal nonequilibrium is still an open problem in aerothermodynamics. In the case of reusable thermal protection systems, it is unclear how much of t...
The book collects relevant contributions presented at a conference, organized in honour of Carlo Cercignani, that took place at Politecnico di Milano on May 24–28, 2021. Different research areas characterizing the scientific work of Carlo Cercignan
Autor:
Aldo Frezzotti, Paolo Barbante
Publikováno v:
European Journal of Mechanics - B/Fluids. 64:69-80
The evaporation of a thin liquid film is studied by a diffuse interface model whose thermodynamic and transport properties are consistent with those of the Lennard-Jones fluid. Solutions are obtained for various liquid film temperatures and downstrea
Autor:
Aldo Frezzotti, Paolo Barbante
Publikováno v:
Mechanical Engineering Reviews. 4:16-00540
Autor:
Aldo Frezzotti, Paolo Barbante
Publikováno v:
Physics of Fluids. 32:122106
The vapor condensation onto a thin liquid film, induced by the reflection of a weak shock wave, is studied by molecular dynamics atomistic simulations of a simple Lennard-Jones fluid. Molecular dynamics results provide reference flowfields for two mo
Autor:
Aldo Frezzotti, Paolo Barbante
Publikováno v:
31ST INTERNATIONAL SYMPOSIUM ON RAREFIED GAS DYNAMICS: RGD31.
Publikováno v:
Frezzotti, A, Barbante, P & Gibelli, L 2019, ' Direct simulation Monte Carlo applications to liquid-vapor flows ', Physics of Fluids, vol. 31, no. 6, 062103 . https://doi.org/10.1063/1.5097738
The paper aims at presenting Direct Simulation Monte Carlo (DSMC) extensions and applications to dense fluids. A succinct review of past and current research topics is presented, followed by a more detailed description of DSMC simulations for the num
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::ad48ae2d6267ee701f71a8c7cff9adcd
http://hdl.handle.net/11311/1088508
http://hdl.handle.net/11311/1088508
Publikováno v:
Kinetic and Related Models. 8:235-254
A kinetic model for the study of capillary flows in devices with microscale geometry is presented. The model is based on the Enskog-Vlasov kinetic equation and provides a reasonable description of both fluid-fluid and fluid-wall interactions. Numeric
Publikováno v:
2018 AIAA Aerospace Sciences Meeting.
Autor:
Alessandro Turchi, Georgios Bellas Chatzigeorgis, Olivier Chazot, Alan Viladegut, Paolo Barbante, Thierry Magin
Publikováno v:
23rd AIAA Computational Fluid Dynamics Conference.