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题名Metastable and unstable hydrodynamics in multiphase lattice Boltzmann
作者
发表日期2024-04-01
发表期刊Physical Review E
ISSN/eISSN2470-0045
卷号109期号:4
摘要

Metastability in liquids is at the foundation of complex phase transformation dynamics such as nucleation and cavitation. Intermolecular interaction details, beyond the equation of state, and thermal hydrodynamic fluctuations play a crucial role. However, most numerical approaches suffer from a slow time and space convergence, thus hindering the convergence to the hydrodynamic limit. This work shows that the Shan-Chen lattice Boltzmann model has the unique capability of simulating the hydrodynamics of the metastable state. The structure factor of density fluctuations is theoretically obtained and numerically verified to a high precision, for all simulated wave vectors, reduced temperatures, and pressures, deep into the metastable region. Such remarkable agreement between the theory and simulations leverages the exact implementation at the lattice level of the mechanical equilibrium condition. The static structure factor is found to consistently diverge as the temperature approaches the critical point or the density approaches the spinodal line at a subcritical temperature. Theoretically predicted critical exponents are observed in both cases. Finally, the phase separation in the unstable branch follows the same pattern, i.e., the generation of interfaces with different topology, as observed in molecular dynamics simulations.

DOI10.1103/PhysRevE.109.045304
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收录类别SCIE
语种英语English
WOS研究方向Physics
WOS类目Physics, Fluids & Plasmas ; Physics, Mathematical
WOS记录号WOS:001221328700005
Scopus入藏号2-s2.0-85190522241
引用统计
被引频次:3[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符https://repository.uic.edu.cn/handle/39GCC9TT/11463
专题北师香港浸会大学
通讯作者Lulli, Matteo; Shan, Xiaowen
作者单位
1.Department of Mechanics and Aerospace Engineering,Southern University of Science and Technology,Shenzhen,Guangdong,518055,China
2.Department of Physics,The Chinese University of Hong Kong,Hong Kong,Sha Tin,China
3.Department of Physics,INFN,University of Rome Tor Vergata,Rome,Via della Ricerca Scientifica 1,00133,Italy
4.Department of Enterprise Engineering Mario Lucertini,University of Rome Tor Vergata,Rome,Via del Politecnico 1,00133,Italy
5.John A. Paulson School of Engineering and Applied Physics,Harvard University,Cambridge,33 Oxford Street,02138,United States
6.Institute of Advanced Study,BNU-HKBU United International College,Zhuhai,Guangdong,519088,China
通讯作者单位北师香港浸会大学
推荐引用方式
GB/T 7714
Lulli, Matteo,Biferale, Luca,Falcucci, Giacomoet al. Metastable and unstable hydrodynamics in multiphase lattice Boltzmann[J]. Physical Review E, 2024, 109(4).
APA Lulli, Matteo, Biferale, Luca, Falcucci, Giacomo, Sbragaglia, Mauro, Yang, Dong, & Shan, Xiaowen. (2024). Metastable and unstable hydrodynamics in multiphase lattice Boltzmann. Physical Review E, 109(4).
MLA Lulli, Matteo,et al."Metastable and unstable hydrodynamics in multiphase lattice Boltzmann". Physical Review E 109.4(2024).
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