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命中:
48
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1.
An improved pore-network model including viscous coupling effects using direct simulation by the lattice
Boltzmann
method
作者:
Chiyu Xiea
;
Ali Q. Raeinib
;
Yihang Wanga
;
Martin J. Bluntb
;
m.blunt@imperial.ac.uk
;
Moran Wanga
;
mrwang@tsinghua.edu.cn
关键词:
Pore-network model
;
Viscous coupling effect
;
Two-phase flow
;
Lattice
Boltzmann
method
;
Porous media
刊名:Advances in Water Resources
年:2017
2.
Intercomparison of 3D pore-scale flow and solute transport simulation
method
s
作者:
Xiaofan Yanga
;
Yashar Mehmanib
;
William A. Perkinsa
;
Andrea Pasqualic
;
Martin Schö
;
nherrc
;
Kyungjoo Kimd
;
Mauro Peregod
;
Michael L. Parksd
;
Nathaniel Traske
;
Matthew T. Balhofff
;
Marshall C. Richmonda
;
Martin Geierc
;
Manfred Krafczykc
;
Li-Shi Luog
;
h
;
Alexandre M. Tartakovskya
;
Timothy D. Scheibe
;
a
;
tim.scheibe@pnnl.gov" class="auth_mail" title="E-mail the corresponding author
关键词:
Pore-scale modeling
;
Porous media flow
;
Computational fluid dynamics
;
Lattice
Boltzmann
method
;
Smoothed particle hydrodynamics
;
Pore-network model
刊名:Advances in Water Resources
年:2016
3.
Terminal shape and velocity of a rising bubble by phase-field-based incompressible Lattice
Boltzmann
model
作者:
Feng Rena
;
Baowei Songa
;
songbaowei@nwpu.edu.cn" class="auth_mail" title="E-mail the corresponding author
;
Michael C. Sukopb
关键词:
Bubble rise
;
Lattice
Boltzmann
method
;
Phase-field model
;
Cahn&ndash
;
Hilliard mobility
刊名:Advances in Water Resources
年:2016
4.
Coupling between finite volume
method
and lattice
Boltzmann
method
and its application to fluid flow and mass transport in proton exchange membrane fuel cell
作者:
Li Chen
;
Huibao Luan
;
Yongliang Feng
;
Chenxi Song
;
Ya-Ling He
;
Wen-Quan Tao
;
wqtao@mail.xjtu.edu.cn
关键词:
Finite volume
method
;
Lattice
Boltzmann
method
;
Coupling
;
Mass transport
;
Proton exchange membrane fuel cell
刊名:International Journal of Heat and Mass Transfer
年:2012
5.
Capillary filling and Haines jump dynamics using free energy Lattice
Boltzmann
simulations
作者:
Ioannis Zacharoudiou
;
a
;
i.zacharoudiou@imperial.ac.uk" class="auth_mail" title="E-mail the corresponding author
;
Edo S. Boeka
;
b
关键词:
Capillary filling
;
Haines jump events
;
Interfacial jumps
;
Pore scale modeling
;
Drainage
;
Free energy Lattice
Boltzmann
method
刊名:Advances in Water Resources
年:2016
6.
A lattice
Boltzmann
study on the impact of the geometrical properties of porous media on the steady state relative permeabilities on two-phase immiscible flows
作者:
Duo Zhanga
;
b
;
c
;
K. Papadikis
;
a
;
Konstantinos.Papadikis@xjtlu.edu.cn" class="auth_mail" title="E-mail the corresponding author
;
Sai Guc
;
sai.gu@surrey.ac.uk" class="auth_mail" title="E-mail the corresponding author
关键词:
Porous media
;
MRT Lattice
Boltzmann
method
;
Relative permeability
;
Boolean model
;
Minkowski functionals
刊名:Advances in Water Resources
年:2016
7.
Influence of surface roughness on nonlinear flow behaviors in 3D self-affine rough fractures: Lattice
Boltzmann
simulations
作者:
Min Wanga
;
b
;
wangmin@whu.edu.cn" class="auth_mail" title="E-mail the corresponding author
;
Yi-Feng Chena
;
csyfchen@whu.edu.cn" class="auth_mail" title="E-mail the corresponding author
;
Guo-Wei Mab
;
guowei.ma@uwa.edu.au" class="auth_mail" title="E-mail the corresponding author
;
Jia-Qing Zhoua
;
Chuang-Bing Zhoua
;
c
关键词:
Self-affine fractures
;
Surface roughness
;
Roughness decomposition
;
Nonlinear fluid flow
;
Lattice
Boltzmann
method
刊名:Advances in Water Resources
年:2016
8.
A lattice
Boltzmann
-finite element model for two-dimensional fluid-structure interaction problems involving shallow waters
作者:
Alessandro De Rosis alessandro.derosis@unibo.it" class="auth_mail
关键词:
Fluid&ndash
;
structure interaction
;
Lattice
Boltzmann
method
;
Time discontinuous Galerkin
;
Shallow waters
刊名:Advances in Water Resources
年:March, 2014
9.
Leveraging the Performance of LBM-HPC for Large Sizes on GPUs Using Ghost Cells
关键词:
Computational fluid dynamics
;
Lattice
;
Boltzmann
Method
;
GPU
;
CUDA
刊名:Lecture Notes in Computer Science
年:2016
10.
A similarity
method
approach for early-transient multiphase flow analysis of liquid-rich unconventional gas reservoirs
作者:
Miao Zhang
;
Matthew D. Becker
;
Luis F. Ayala
;
ayala@psu.edu" class="auth_mail" title="E-mail the corresponding author
关键词:
Unconventional resources
;
Liquid-rich gas reservoirs
;
Similarity theory
;
Boltzmann
transformation
;
Multiphase flow
刊名:Journal of Natural Gas Science and Engineering
年:2016
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