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Mesoscopic model for binary fluids

delete2017-05-27
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PRE
AI
C
Carlos Echeverría
K
K. Tucci
O
O. Alvarez-Llamoza
E
E. E. Orozco-Guillén
M
Miguel Morales
M
M. G. Cosenza *
DOI:10.1007/s11467-017-0688-4delete
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摘要

摘要

En 中文
We propose a model for studying binary fluids based on the mesoscopic molecular simulation technique known as multiparticle collision, where the space and state variables are continuous, and time is discrete. We include a repulsion rule to simulate segregation processes that does not require calculation of the interaction forces between particles, so binary fluids can be described on a mesoscopic scale. The model is conceptually simple and computationally efficient; it maintains Galilean invariance and conserves the mass and energy in the system at the micro- and macro-scale, whereas momentum is conserved globally. For a wide range of temperatures and densities, the model yields results in good agreement with the known properties of binary fluids, such as the density profile, interface width, phase separation, and phase growth. We also apply the model to the study of binary fluids in crowded environments with consistent results.
Keyword:
multiparticle collision dynamics
mesoscopic models
phase separation
interface dynamics
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期刊

Frontiers of Physics 封面图
Frontiers of Physics
IF:
5.3
论文数:
1.4K
被引数:
3.7K

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U
university of los andes venezuela
学者数:
876
论文数: 559
被引数: 1
U
universidad catolica de cuenca
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224
论文数: 182
被引数: 1
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