Zobrazeno 1 - 10
of 86
pro vyhledávání: '"M.A. van der Hoef"'
Publikováno v:
Chemical engineering science, 60(16), 4567-4580. Elsevier
Chemical Engineering Science, 60(16), 4567-4580. Elsevier
Chemical Engineering Science, 60(16), 4567-4580. Elsevier
We report on 3D computer simulations based on the soft-sphere discrete particle model (DPM) of Geldart A particles in a 3D gas-fluidized bed. The effects of particle and gas properties on the fluidization behavior of Geldart A particles are studied,
Publikováno v:
Chemical engineering science, 59(22-23), 5157-5165. Elsevier
Dense gas–particle flows are encountered in a variety of industrially important processes for large scale production of fuels, fertilizers and base chemicals. The scale-up of these processes is often problematic, which can be related to the intrins
Publikováno v:
Europhysics letters, 17(1), 39. EDP sciences
We report simulations of the velocity autocorrelation function (VACF) of a tagged particle in a four-dimensional lattice gas cellular automaton (LGCA). We observe a hydrodynamic tail in the VACF, which decays as t-‘, in agreement with the theoretic
Publikováno v:
Physical review letters, 67(24), 3459. American physical society
Simulations of a colloidal particle suspended in a two-dimensional fluid are reported. The dissipative and fluctuating hydrodynamic forces acting on the particle are modeled by a lattice gas. Our results indicate that large long-time tails are presen
Autor:
M.A. van der Hoef, Daan Frenkel
Publikováno v:
Physical Review Letters. 66:1591-1594
We report very accurate simulations of the velocity autocorrelation function of a tagged particle in a two-dimensional lattice-gas cellular automaton. We observe, for the first time, that the hydrodynamic long-time tail of the velocity autocorrelatio
Autor:
Daan Frenkel, M.A. van der Hoef
Publikováno v:
Physical Review A. 41:4277-4284
We report simulations of the velocity autocorrelation function (VACF) of a tagged particle in two- and three-dimensional lattice-gas cellular automata, using a new technique that is about a million times more efficient than the conventional technique
Publikováno v:
Physical Review E. 74
Publikováno v:
China Particuology, 3(1-2), 69-77. Chinese Society of Particuology; The Institute of Process Engineering
China particuology, 3(1-2), 69-77. Chinese Society of Particuology; The Institute of Process Engineering
China particuology, 3(1-2), 69-77. Chinese Society of Particuology; The Institute of Process Engineering
Dense gas-particle flows are encountered in a variety of industrially important processes for large scale production of fuels, fertilizers and base chemicals. The scale-up of these processes is often problematic and is related to the intrinsic comple
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::6e5fc9cd10fb784874d58052768f73ee
https://research.tue.nl/nl/publications/7f23be8c-1262-4c0e-8c03-d4c82bc8c5f8
https://research.tue.nl/nl/publications/7f23be8c-1262-4c0e-8c03-d4c82bc8c5f8
Publikováno v:
Physical Review E: statistical, nonlinear and soft matter physics, 47(6), 4098. American physical society
In a one-dimensional fluid the macroscopic Navier-Stokes equations are no longer valid because of long-time tails and diverging transport coefficients. By performing computer simulations on a one-dimensional cellular automaton fluid we have investiga
Autor:
M.A. van der Hoef, Daan Frenkel
Publikováno v:
Physica D: nonlinear phenomena, 47(1-2), 191. Elsevier
We report simulations of tagged particle diffusion in three-dimensional lattice gas cellular automata (LGCA). In particular we looked at the decay of the velocity autocorrelation function (VACF) using a new technique that is about a million times mor
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::a1ec8de72fd64b7b7e87fadb1cfabd31
https://dspace.library.uu.nl/handle/1874/9467
https://dspace.library.uu.nl/handle/1874/9467