LB3D: A parallel implementation of the Lattice-Boltzmann method for simulation of interacting amphiphilic fluids

We introduce the lattice-Boltzmann code LB3D, version 7.1. Building on a parallel program and supporting tools which have enabled research utilising high performance computing resources for nearly two decades, LB3D version 7 provides a subset of the research code functionality as an open source proj...

Full description

Saved in:
Bibliographic Details
Published inComputer physics communications Vol. 217; pp. 149 - 161
Main Authors Schmieschek, S., Shamardin, L., Frijters, S., Krüger, T., Schiller, U.D., Harting, J., Coveney, P.V.
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.08.2017
Subjects
Online AccessGet full text
ISSN0010-4655
1879-2944
1879-2944
DOI10.1016/j.cpc.2017.03.013

Cover

Abstract We introduce the lattice-Boltzmann code LB3D, version 7.1. Building on a parallel program and supporting tools which have enabled research utilising high performance computing resources for nearly two decades, LB3D version 7 provides a subset of the research code functionality as an open source project. Here, we describe the theoretical basis of the algorithm as well as computational aspects of the implementation. The software package is validated against simulations of meso-phases resulting from self-assembly in ternary fluid mixtures comprising immiscible and amphiphilic components such as water–oil–surfactant systems. The impact of the surfactant species on the dynamics of spinodal decomposition are tested and quantitative measurement of the permeability of a body centred cubic (BCC) model porous medium for a simple binary mixture is described. Single-core performance and scaling behaviour of the code are reported for simulations on current supercomputer architectures. Program Title: LB3D Program Files doi:http://dx.doi.org/10.17632/9g9x2wr8z8.1 Licensing provisions: BSD 3-clause Programming language: FORTRAN90, Python, C Nature of problem: Solution of the hydrodynamics of single phase, binary immiscible and ternary amphiphilic fluids. Simulation of fluid mixtures comprising miscible and immiscible fluid components as well as amphiphilic species on the mesoscopic scale. Observable phenomena include self-organisation of mesoscopic complex fluid phases and fluid transport in porous media. Solution method: Lattice-Boltzmann (lattice-Bhatnagar–Gross–Krook, LBGK) [1, 2, 3] method describing fluid dynamics in terms of the single particle velocity distribution function in a 3-dimensional discrete phase space (D3Q19) [4, 5, 6]. Multiphase interactions are modelled using a phenomenological pseudo-potential approach [7, 8] with amphiphilic interactions utilising an additional dipole field [9, 10]. Solid boundaries are modelled using simple bounce-back boundary conditions and additional pseudo-potential wetting interactions [11]. Additional comments including Restrictions and Unusual features: The purpose of the release is the provision of a refactored minimal version of LB3D suitable as a starting point for the integration of additional features building on the parallel computation and IO functionality. [1]S. Succi, The Lattice Boltzmann Equation: For Fluid Dynamics and Beyond, Oxford University Press, 2001.[2]B. Dünweg, A. Ladd, Lattice Boltzmann simulations of soft matter systems, Adv. Poly. Sci. 221 (2009) 89–166[3]C. K. Aidun, J. R. Clausen, Lattice-Boltzmann Method for Complex Flows, Annual Review of Fluid Mechanics 42 (2010) 439.[4]X. He, L.-S. Luo, A priori derivation of the lattice-Boltzmann equation, Phys. Rev. E 55 (1997) R6333.[5]X. He, L.-S. Luo, Theory of the lattice Boltzmann method: from the Boltzmann equation to the lattice Boltzmann equation, Phys. Rev. E 56.[6]Y. H. Qian, D. D’Humiéres, P. Lallemand, Lattice BGK Models for Navier–Stokes Equation, Europhysics Letters 17 (1992) 479.[7]X. Shan, H. Chen, Lattice-Boltzmann model for simulating flows with multiple phases and components, Physical Review E 47 (1993) 1815.[8]X. Shan, G. Doolen, Multicomponent lattice-Boltzmann model with interparticle interaction, Journal of Statistical Physics 81 (1995) 379.[9]H. Chen, B. Boghosian, P.V. Coveney, M. Nekovee, A ternary lattice-Boltzmann model for amphiphilic fluids, Proceedings of the Royal Society of London A 456 (2000) 2043.[10]M. Nekovee, P. V. Coveney, H. Chen, B. M. Boghosian, Lattice-Boltzmann model for interacting amphiphilic fluids, Phys. Rev. E 62 (2000) 8282.[11]N. S. Martys, H. Chen, Simulation of multicomponent fluids in complex three-dimensional geometries by the lattice-Boltzmann method, Phys. Rev. E 53 (1996) 743.
AbstractList We introduce the lattice-Boltzmann code LB3D, version 7.1. Building on a parallel program and supporting tools which have enabled research utilising high performance computing resources for nearly two decades, LB3D version 7 provides a subset of the research code functionality as an open source project. Here, we describe the theoretical basis of the algorithm as well as computational aspects of the implementation. The software package is validated against simulations of meso-phases resulting from self-assembly in ternary fluid mixtures comprising immiscible and amphiphilic components such as water–oil–surfactant systems. The impact of the surfactant species on the dynamics of spinodal decomposition are tested and quantitative measurement of the permeability of a body centred cubic (BCC) model porous medium for a simple binary mixture is described. Single-core performance and scaling behaviour of the code are reported for simulations on current supercomputer architectures. Program Title: LB3D Program Files doi:http://dx.doi.org/10.17632/9g9x2wr8z8.1 Licensing provisions: BSD 3-clause Programming language: FORTRAN90, Python, C Nature of problem: Solution of the hydrodynamics of single phase, binary immiscible and ternary amphiphilic fluids. Simulation of fluid mixtures comprising miscible and immiscible fluid components as well as amphiphilic species on the mesoscopic scale. Observable phenomena include self-organisation of mesoscopic complex fluid phases and fluid transport in porous media. Solution method: Lattice-Boltzmann (lattice-Bhatnagar–Gross–Krook, LBGK) [1, 2, 3] method describing fluid dynamics in terms of the single particle velocity distribution function in a 3-dimensional discrete phase space (D3Q19) [4, 5, 6]. Multiphase interactions are modelled using a phenomenological pseudo-potential approach [7, 8] with amphiphilic interactions utilising an additional dipole field [9, 10]. Solid boundaries are modelled using simple bounce-back boundary conditions and additional pseudo-potential wetting interactions [11]. Additional comments including Restrictions and Unusual features: The purpose of the release is the provision of a refactored minimal version of LB3D suitable as a starting point for the integration of additional features building on the parallel computation and IO functionality. [1]S. Succi, The Lattice Boltzmann Equation: For Fluid Dynamics and Beyond, Oxford University Press, 2001.[2]B. Dünweg, A. Ladd, Lattice Boltzmann simulations of soft matter systems, Adv. Poly. Sci. 221 (2009) 89–166[3]C. K. Aidun, J. R. Clausen, Lattice-Boltzmann Method for Complex Flows, Annual Review of Fluid Mechanics 42 (2010) 439.[4]X. He, L.-S. Luo, A priori derivation of the lattice-Boltzmann equation, Phys. Rev. E 55 (1997) R6333.[5]X. He, L.-S. Luo, Theory of the lattice Boltzmann method: from the Boltzmann equation to the lattice Boltzmann equation, Phys. Rev. E 56.[6]Y. H. Qian, D. D’Humiéres, P. Lallemand, Lattice BGK Models for Navier–Stokes Equation, Europhysics Letters 17 (1992) 479.[7]X. Shan, H. Chen, Lattice-Boltzmann model for simulating flows with multiple phases and components, Physical Review E 47 (1993) 1815.[8]X. Shan, G. Doolen, Multicomponent lattice-Boltzmann model with interparticle interaction, Journal of Statistical Physics 81 (1995) 379.[9]H. Chen, B. Boghosian, P.V. Coveney, M. Nekovee, A ternary lattice-Boltzmann model for amphiphilic fluids, Proceedings of the Royal Society of London A 456 (2000) 2043.[10]M. Nekovee, P. V. Coveney, H. Chen, B. M. Boghosian, Lattice-Boltzmann model for interacting amphiphilic fluids, Phys. Rev. E 62 (2000) 8282.[11]N. S. Martys, H. Chen, Simulation of multicomponent fluids in complex three-dimensional geometries by the lattice-Boltzmann method, Phys. Rev. E 53 (1996) 743.
Author Frijters, S.
Krüger, T.
Coveney, P.V.
Harting, J.
Schmieschek, S.
Schiller, U.D.
Shamardin, L.
Author_xml – sequence: 1
  givenname: S.
  orcidid: 0000-0002-0369-1666
  surname: Schmieschek
  fullname: Schmieschek, S.
  organization: Centre for Computational Science, Department of Chemistry, University College London, 20 Gordon St., London, WC1H 0AJ, United Kingdom
– sequence: 2
  givenname: L.
  orcidid: 0000-0002-4392-6626
  surname: Shamardin
  fullname: Shamardin, L.
  organization: Centre for Computational Science, Department of Chemistry, University College London, 20 Gordon St., London, WC1H 0AJ, United Kingdom
– sequence: 3
  givenname: S.
  surname: Frijters
  fullname: Frijters, S.
  organization: Department of Applied Physics, Eindhoven University of Technology, P.O. Box 513, 5600 MB Eindhoven, The Netherlands
– sequence: 4
  givenname: T.
  surname: Krüger
  fullname: Krüger, T.
  organization: Centre for Computational Science, Department of Chemistry, University College London, 20 Gordon St., London, WC1H 0AJ, United Kingdom
– sequence: 5
  givenname: U.D.
  orcidid: 0000-0001-8941-1284
  surname: Schiller
  fullname: Schiller, U.D.
  organization: Centre for Computational Science, Department of Chemistry, University College London, 20 Gordon St., London, WC1H 0AJ, United Kingdom
– sequence: 6
  givenname: J.
  orcidid: 0000-0002-9200-6623
  surname: Harting
  fullname: Harting, J.
  organization: Department of Applied Physics, Eindhoven University of Technology, P.O. Box 513, 5600 MB Eindhoven, The Netherlands
– sequence: 7
  givenname: P.V.
  surname: Coveney
  fullname: Coveney, P.V.
  email: p.v.coveney@ucl.ac.uk
  organization: Centre for Computational Science, Department of Chemistry, University College London, 20 Gordon St., London, WC1H 0AJ, United Kingdom
BookMark eNqNkM9KxDAQh4MouLv6AN7yAq1J0zStnnbXv1DwoueQplM3S5qWNKusT2-XigcPizAwMPy-Geabo1PXOUDoipKYEppdb2Pd6zghVMSExYSyEzSjuSiipEjTUzQjhJIozTg_R_Nh2BJChCjYDPXlit3d4CXulVfWgsWm7S204IIKpnO4a3DYAC5VCEZDtOps-GqVc7iFsOlq3HQeD6bd2d-4cQG80sG4d6zafmPGskbjxu5MPVygs0bZAS5_-gK9Pdy_rp-i8uXxeb0sI81SEiJNdFGpCpKGC0YbykVaCZXrTOeac1aNU5ZntEqyDIpacciqXBBa8KqpC0oTtkDJtHfnerX_HH-TvTet8ntJiTw4k1s5OpMHZ5IwOTobITFB2nfD4KGR2kweglfGHiXpH_I_124nBkYPHwa8HLQBp6E2HnSQdWeO0N-Cw5o2
CitedBy_id crossref_primary_10_1016_j_ijheatmasstransfer_2019_05_056
crossref_primary_10_4018_IJGHPC_2019010102
crossref_primary_10_1080_08927022_2018_1560439
crossref_primary_10_1016_j_ijheatmasstransfer_2017_07_042
crossref_primary_10_1016_j_jocs_2020_101269
crossref_primary_10_1039_D4SM00751D
crossref_primary_10_1016_j_coche_2018_03_003
crossref_primary_10_1002_cpe_5184
crossref_primary_10_1098_rsta_2020_0399
crossref_primary_10_1103_PhysRevMaterials_4_083804
crossref_primary_10_1016_j_cpc_2023_108898
crossref_primary_10_1063_5_0015254
crossref_primary_10_1103_PhysRevE_110_025304
crossref_primary_10_1016_j_camwa_2020_01_007
crossref_primary_10_1002_nag_2920
crossref_primary_10_1016_j_cpc_2024_109469
crossref_primary_10_1016_j_cpc_2021_108259
crossref_primary_10_3390_en15217884
crossref_primary_10_1016_j_ces_2020_115925
crossref_primary_10_1016_j_cpc_2024_109241
crossref_primary_10_1103_PhysRevE_103_023306
crossref_primary_10_1016_j_cesx_2019_100015
crossref_primary_10_1016_j_jobe_2024_109634
crossref_primary_10_1016_j_jpdc_2019_02_004
crossref_primary_10_1103_PhysRevE_106_015308
crossref_primary_10_1615_ComputThermalScien_2023045600
crossref_primary_10_1016_j_aej_2020_03_026
crossref_primary_10_1142_S0129183119500414
crossref_primary_10_1080_23746149_2023_2246704
crossref_primary_10_1557_mrc_2018_29
crossref_primary_10_1016_j_cpc_2020_107455
crossref_primary_10_1007_s11831_023_09981_2
crossref_primary_10_1016_j_camwa_2020_09_017
crossref_primary_10_1063_5_0077314
crossref_primary_10_1039_D1SM01294K
crossref_primary_10_1039_D1SM00126D
Cites_doi 10.1007/BF02179985
10.1098/rspa.2000.0601
10.1103/PhysRevE.68.066614
10.1103/PhysRevE.75.066705
10.1063/1.439809
10.1103/PhysRevE.69.061501
10.1103/PhysRevE.51.R2739
10.1039/b911884e
10.1103/PhysRevE.47.1815
10.1103/PhysRevLett.80.65
10.1103/PhysRevE.53.743
10.1007/BF01049965
10.1016/j.cpc.2004.10.001
10.1103/PhysRevE.73.031503
10.1016/j.matcom.2006.05.035
10.1103/PhysRevE.67.046304
10.1103/PhysRevE.55.R6333
10.1023/A:1010414013942
10.1016/0301-9322(82)90047-7
10.1063/1.869307
10.1209/0295-5075/17/6/001
10.1017/S0022112005008153
10.1098/rsta.2004.1402
10.1103/PhysRev.94.511
10.1016/0167-2789(91)90295-K
10.1088/1742-5468/2009/06/P06015
10.1007/BF02181482
10.1103/PhysRevE.62.8282
10.1016/j.compgeo.2006.08.002
10.1098/rspa.2008.0479
10.1016/0001-6160(61)90182-1
10.1017/S0022112059000222
10.1016/S0010-4655(00)00205-8
10.1021/jp0731506
10.1016/0167-2789(91)90294-J
10.1080/00107510310001605046
10.1103/PhysRevE.65.046308
10.1016/j.cpc.2008.02.013
10.1103/PhysRevE.75.041504
10.1016/0001-6160(62)90114-1
10.1103/PhysRevE.64.061302
10.1103/PhysRevE.56.6811
10.1098/rsta.2005.1618
10.1103/PhysRevE.66.016303
10.1146/annurev-fluid-121108-145519
10.1098/rspa.2000.0570
10.1103/PhysRevE.57.R13
10.1098/rsta.2009.0049
ContentType Journal Article
Copyright 2017 The Authors
Copyright_xml – notice: 2017 The Authors
DBID 6I.
AAFTH
AAYXX
CITATION
ADTOC
UNPAY
DOI 10.1016/j.cpc.2017.03.013
DatabaseName ScienceDirect Open Access Titles
Elsevier:ScienceDirect:Open Access
CrossRef
Unpaywall for CDI: Periodical Content
Unpaywall
DatabaseTitle CrossRef
DatabaseTitleList
Database_xml – sequence: 1
  dbid: UNPAY
  name: Unpaywall
  url: https://proxy.k.utb.cz/login?url=https://unpaywall.org/
  sourceTypes: Open Access Repository
DeliveryMethod fulltext_linktorsrc
Discipline Physics
EISSN 1879-2944
EndPage 161
ExternalDocumentID oai:pure.tue.nl:openaire/86da74e9-5a83-4d9b-ad98-c0bf32b46652
10_1016_j_cpc_2017_03_013
S0010465517301017
GroupedDBID --K
--M
-~X
.DC
.~1
0R~
1B1
1RT
1~.
1~5
29F
4.4
457
4G.
5GY
5VS
6I.
7-5
71M
8P~
9JN
AACTN
AAEDT
AAEDW
AAFTH
AAIAV
AAIKJ
AAKOC
AALRI
AAOAW
AAQFI
AAQXK
AARLI
AAXUO
AAYFN
ABBOA
ABFNM
ABMAC
ABNEU
ABQEM
ABQYD
ABXDB
ABYKQ
ACDAQ
ACFVG
ACGFS
ACLVX
ACNNM
ACRLP
ACSBN
ACZNC
ADBBV
ADECG
ADEZE
ADJOM
ADMUD
AEBSH
AEKER
AENEX
AFKWA
AFTJW
AFZHZ
AGHFR
AGUBO
AGYEJ
AHHHB
AHZHX
AI.
AIALX
AIEXJ
AIKHN
AITUG
AIVDX
AJBFU
AJOXV
AJSZI
ALMA_UNASSIGNED_HOLDINGS
AMFUW
AMRAJ
AOUOD
ASPBG
ATOGT
AVWKF
AXJTR
AZFZN
BBWZM
BKOJK
BLXMC
CS3
DU5
EBS
EFJIC
EFLBG
EJD
EO8
EO9
EP2
EP3
F5P
FDB
FEDTE
FGOYB
FIRID
FLBIZ
FNPLU
FYGXN
G-2
G-Q
GBLVA
GBOLZ
HLZ
HME
HMV
HVGLF
HZ~
IHE
IMUCA
J1W
KOM
LG9
LZ4
M38
M41
MO0
N9A
NDZJH
O-L
O9-
OAUVE
OGIMB
OZT
P-8
P-9
P2P
PC.
Q38
R2-
RIG
ROL
RPZ
SBC
SCB
SDF
SDG
SES
SEW
SHN
SPC
SPCBC
SPD
SPG
SSE
SSK
SSQ
SSV
SSZ
T5K
TN5
UPT
VH1
WUQ
ZMT
~02
~G-
AATTM
AAXKI
AAYWO
AAYXX
ABJNI
ABWVN
ACLOT
ACRPL
ACVFH
ADCNI
ADNMO
AEIPS
AEUPX
AFJKZ
AFPUW
AGQPQ
AIGII
AIIUN
AKBMS
AKRWK
AKYEP
ANKPU
APXCP
CITATION
EFKBS
~HD
ADTOC
UNPAY
ID FETCH-LOGICAL-c340t-c0c9babe2f5731f1574b7a8c6c8c553b5733861b266e9da5e6b870195bfd91123
IEDL.DBID .~1
ISSN 0010-4655
1879-2944
IngestDate Wed Oct 29 11:39:52 EDT 2025
Wed Oct 01 03:22:51 EDT 2025
Thu Apr 24 23:09:25 EDT 2025
Fri Feb 23 02:30:57 EST 2024
IsDoiOpenAccess true
IsOpenAccess true
IsPeerReviewed true
IsScholarly true
Keywords High performance computing
Multiphase flow
LB3D
Lattice-Boltzmann method
LBM
Language English
License This is an open access article under the CC BY license.
cc-by
LinkModel DirectLink
MergedId FETCHMERGED-LOGICAL-c340t-c0c9babe2f5731f1574b7a8c6c8c553b5733861b266e9da5e6b870195bfd91123
ORCID 0000-0002-0369-1666
0000-0001-8941-1284
0000-0002-9200-6623
0000-0002-4392-6626
OpenAccessLink https://www.sciencedirect.com/science/article/pii/S0010465517301017
PageCount 13
ParticipantIDs unpaywall_primary_10_1016_j_cpc_2017_03_013
crossref_citationtrail_10_1016_j_cpc_2017_03_013
crossref_primary_10_1016_j_cpc_2017_03_013
elsevier_sciencedirect_doi_10_1016_j_cpc_2017_03_013
ProviderPackageCode CITATION
AAYXX
PublicationCentury 2000
PublicationDate August 2017
2017-08-00
PublicationDateYYYYMMDD 2017-08-01
PublicationDate_xml – month: 08
  year: 2017
  text: August 2017
PublicationDecade 2010
PublicationTitle Computer physics communications
PublicationYear 2017
Publisher Elsevier B.V
Publisher_xml – name: Elsevier B.V
References Palabos - CFD Complex Physics
Love, Maillet, Coveney (b8) 2001; 64
Mazzeo, Coveney (b2) 2008; 178
E. Breitmoser, J. Chin, C. Dan, F. Dörfler, S. Frijters, G. Giupponi, N. González-Segredo, F. Günther, J. Harting, M. Harvey, M. Hecht, S. Jha, F. Janoschek, F. Jansen, C. Kunert, M. Lujan, I. Murray, A. Narváez, M. Nekovee, A. Porter, F. Raischel, R. Saksena, S. Schmieschek, D. Sinz, M. Venturoli, T. Zauner, LB3D user manual, UCL
Cahn (b66) 1961; 9
Ziegler (b55) 1993; 71
Succi (b35) 2001
Exa Simulation Software Solutions — Exa Corporation
He, Luo (b38) 1997; 55
Ginzburg, D’Humières (b57) 2003; 68
Schmieschek, Narváez, Harting (b69) 2013; vol. 12
Chen, Boghosian, Coveney, Nekovee (b10) 2000; 456
Dünweg, Ladd (b36) 2009; 221
Harting, Harvey, Chin, Coveney (b26) 2005; 165
González-Segredo, Harting, Giupponi, Coveney (b29) 2006; 73
Shan, Yuan, Chen (b44) 2006; 550
Zou, He (b59) 1997; 9
D. Groen, O. Henrich, F. Janoschek, P.V. Coveney, J. Harting, Lattice-Boltzmann Methods in Fluid Dynamics: Turbulence and Complex Colloidal Fluids, W.F. Bernd Mohr (Ed.), Jülich Blue Gene/P Extreme Scaling Workshop 2011, Jülich Supercomputing Centre, 52425 Jülich, Germany, 2011, fZJ-JSC-IB-2011-02.
Chin, Coveney, Harting (b12) 2004
Saksena, Coveney (b31) 2008; 112
)
Hecht, Harting (b62) 2010; 13
Desplat, Pagonabarraga, Bladon (b1) 2001; 134
Shan, Chen (b50) 1993; 47
Gennes (b68) 1980; 72
Blake, Coveney, Clarke, Pickles (b14) 2005; 13
Martys, Chen (b52) 1996; 53
Chin, Coveney (b9) 2002; 66
Shan, Doolen (b49) 1995; 81
Mattila, Hyväluoma, Rossi (b61) 2009; 2009
He, Shan, Doolen (b40) 1998; 57
The HDF Group, Hierarchical data format version 5 (2000-2010)
Chin, Harting, Jha, Coveney, Porter, Pickles (b11) 2003; 44
He, Luo (b39) 1997; 56
S.M. Pickles, R.J. Blake, B.M. Boghosian, J.M. Brooke, J. Chin, P.E.L. Clarke, P.V. Coveney, N. González-Segredo, R. Haines, J. Harting, M. Harvey, S. Jha, M.A.S. Jones, M. McKeown, R.K. Pinning, A.R. Porter, K. Roy, M. Riding, Proceedings of the Workshop on Case Studies on Grid Applications at GGF 10
Saksena, Coveney (b33) 2009; 5
Boghosian, Coveney, Love (b7) 2000; 456
Harting, Giupponi, Coveney (b18) 2007; 75
Giupponi, Coveney (b28) 2006; 72
Harting, Venturoli, Coveney (b23) 2004; 362
Ladd, Verberg (b41) 2001; 104
González-Segredo, Nekovee, Coveney (b16) 2003; 7
Harting, Giupponi (b19) 2008
Bhatnagar, Gross, Krook (b45) 1954; 94
Wolf-Gladrow (b46) 2000
Nekovee, Coveney, Chen, Boghosian (b51) 2000; 62
Kutay, Aydilek, Masad (b60) 2006; 33
González-Segredo, Coveney (b20) 2004; 6
Saksena, Boghosian, Fazendeiro, Kenway, Manos, Mazzeo, Sadiq, Suter, Wright, Coveney (b24) 2009; 367
Qian, D’Humières, Lallemand (b42) 1992; 17
Chun, Ladd (b58) 2007; 75
Gonzalez-Segredo, Coveney (b22) 2004; 69
Chekhlov, Yakhot (b48) 1995; 51
P.V. Coveney, R.S. Saksena, Abstracts of Papers of the American Chemical Society 239 (2010) 473
R.S. Saksena, P.V. Coveney, Parallel Lattice-Boltzmann Simulations for the Investigation of Cubic Phase Rheology at the Petascale. Proceedings of the Teragrid conference 2008 (2008) 92
Cahn (b67) 1962; 10
N.J. González Segredo, P.V. Coveney, Lattice-Boltzmann and lattice-gas simulations of binary immiscible and ternary amphiphilic fluids in two and three dimensions
Shan, He (b43) 1998; 80
Harting, Chin, Venturoli, Coveney (b15) 2005; 363
Cornubert, d’Humières, Levermore (b53) 1991; 47
Saksena, Coveney (b32) 2009; 465
Folk, Heber, Koziol, Pourmal, Robinson (b65) 2011
Guo, Zheng, Shi (b47) 2002; 65
Lavallée, Boon, Noullez (b54) 1991; 47
González-Segredo, Coveney (b21) 2004; 6
Sangani, Acrivos (b71) 1982; 8
OpenLB - Open Source Lattice Boltzmann Code
He, Zou, Luo, Dembo (b56) 1997; 87
Aidun, Clausen (b37) 2010; 42
Chin, Coveney (b27) 2006; 462
XFlow is a next generation CFD software system from Next Limit Technologies that uses a proprietary, particle-based, meshless approach which can easily handle traditionally complex problems
Hasimoto (b70) 1959; 5
Harting (10.1016/j.cpc.2017.03.013_b18) 2007; 75
Zou (10.1016/j.cpc.2017.03.013_b59) 1997; 9
Mattila (10.1016/j.cpc.2017.03.013_b61) 2009; 2009
Hasimoto (10.1016/j.cpc.2017.03.013_b70) 1959; 5
González-Segredo (10.1016/j.cpc.2017.03.013_b29) 2006; 73
Bhatnagar (10.1016/j.cpc.2017.03.013_b45) 1954; 94
10.1016/j.cpc.2017.03.013_b13
Cornubert (10.1016/j.cpc.2017.03.013_b53) 1991; 47
González-Segredo (10.1016/j.cpc.2017.03.013_b20) 2004; 6
Chin (10.1016/j.cpc.2017.03.013_b12) 2004
10.1016/j.cpc.2017.03.013_b3
10.1016/j.cpc.2017.03.013_b5
10.1016/j.cpc.2017.03.013_b4
Dünweg (10.1016/j.cpc.2017.03.013_b36) 2009; 221
Harting (10.1016/j.cpc.2017.03.013_b15) 2005; 363
Saksena (10.1016/j.cpc.2017.03.013_b33) 2009; 5
10.1016/j.cpc.2017.03.013_b6
Blake (10.1016/j.cpc.2017.03.013_b14) 2005; 13
Ginzburg (10.1016/j.cpc.2017.03.013_b57) 2003; 68
Chin (10.1016/j.cpc.2017.03.013_b27) 2006; 462
Gonzalez-Segredo (10.1016/j.cpc.2017.03.013_b22) 2004; 69
Saksena (10.1016/j.cpc.2017.03.013_b31) 2008; 112
Saksena (10.1016/j.cpc.2017.03.013_b24) 2009; 367
Cahn (10.1016/j.cpc.2017.03.013_b67) 1962; 10
Shan (10.1016/j.cpc.2017.03.013_b43) 1998; 80
He (10.1016/j.cpc.2017.03.013_b56) 1997; 87
González-Segredo (10.1016/j.cpc.2017.03.013_b16) 2003; 7
He (10.1016/j.cpc.2017.03.013_b39) 1997; 56
Aidun (10.1016/j.cpc.2017.03.013_b37) 2010; 42
Guo (10.1016/j.cpc.2017.03.013_b47) 2002; 65
González-Segredo (10.1016/j.cpc.2017.03.013_b21) 2004; 6
Chen (10.1016/j.cpc.2017.03.013_b10) 2000; 456
10.1016/j.cpc.2017.03.013_b34
Ladd (10.1016/j.cpc.2017.03.013_b41) 2001; 104
Chun (10.1016/j.cpc.2017.03.013_b58) 2007; 75
10.1016/j.cpc.2017.03.013_b30
Mazzeo (10.1016/j.cpc.2017.03.013_b2) 2008; 178
Saksena (10.1016/j.cpc.2017.03.013_b32) 2009; 465
Giupponi (10.1016/j.cpc.2017.03.013_b28) 2006; 72
Schmieschek (10.1016/j.cpc.2017.03.013_b69) 2013; vol. 12
Boghosian (10.1016/j.cpc.2017.03.013_b7) 2000; 456
Shan (10.1016/j.cpc.2017.03.013_b50) 1993; 47
Hecht (10.1016/j.cpc.2017.03.013_b62) 2010; 13
Shan (10.1016/j.cpc.2017.03.013_b44) 2006; 550
Chekhlov (10.1016/j.cpc.2017.03.013_b48) 1995; 51
Kutay (10.1016/j.cpc.2017.03.013_b60) 2006; 33
Chin (10.1016/j.cpc.2017.03.013_b11) 2003; 44
Harting (10.1016/j.cpc.2017.03.013_b23) 2004; 362
Sangani (10.1016/j.cpc.2017.03.013_b71) 1982; 8
He (10.1016/j.cpc.2017.03.013_b40) 1998; 57
Ziegler (10.1016/j.cpc.2017.03.013_b55) 1993; 71
Succi (10.1016/j.cpc.2017.03.013_b35) 2001
10.1016/j.cpc.2017.03.013_b25
He (10.1016/j.cpc.2017.03.013_b38) 1997; 55
Nekovee (10.1016/j.cpc.2017.03.013_b51) 2000; 62
Folk (10.1016/j.cpc.2017.03.013_b65) 2011
10.1016/j.cpc.2017.03.013_b63
Harting (10.1016/j.cpc.2017.03.013_b26) 2005; 165
10.1016/j.cpc.2017.03.013_b64
Love (10.1016/j.cpc.2017.03.013_b8) 2001; 64
Lavallée (10.1016/j.cpc.2017.03.013_b54) 1991; 47
Desplat (10.1016/j.cpc.2017.03.013_b1) 2001; 134
10.1016/j.cpc.2017.03.013_b17
Cahn (10.1016/j.cpc.2017.03.013_b66) 1961; 9
Harting (10.1016/j.cpc.2017.03.013_b19) 2008
Wolf-Gladrow (10.1016/j.cpc.2017.03.013_b46) 2000
Gennes (10.1016/j.cpc.2017.03.013_b68) 1980; 72
Qian (10.1016/j.cpc.2017.03.013_b42) 1992; 17
Shan (10.1016/j.cpc.2017.03.013_b49) 1995; 81
Chin (10.1016/j.cpc.2017.03.013_b9) 2002; 66
Martys (10.1016/j.cpc.2017.03.013_b52) 1996; 53
References_xml – volume: 7
  start-page: 046304
  year: 2003
  ident: b16
  publication-title: Phys. Rev. E
– volume: 165
  start-page: 97
  year: 2005
  end-page: 109
  ident: b26
  publication-title: Comput. Phys. Comm.
– volume: 112
  start-page: 2950
  year: 2008
  end-page: 2957
  ident: b31
  publication-title: J. Phys. Chem. B
– volume: 17
  start-page: 479
  year: 1992
  ident: b42
  publication-title: Europhys. Lett.
– volume: 2009
  start-page: P06015
  year: 2009
  ident: b61
  publication-title: J. Stat. Mech. Theory Exp.
– volume: 13
  start-page: 1
  year: 2005
  end-page: 17
  ident: b14
  publication-title: Sci. Program.
– volume: 10
  start-page: 179
  year: 1962
  end-page: 183
  ident: b67
  publication-title: Acta Metall.
– start-page: 457
  year: 2008
  ident: b19
  publication-title: High Performance Computing in Science and Engineering, vol. 07
– volume: 57
  start-page: R13
  year: 1998
  end-page: R16
  ident: b40
  publication-title: Phys. Rev. E
– volume: 104
  start-page: 1197
  year: 2001
  end-page: 1251
  ident: b41
  publication-title: J. Stat. Phys.
– volume: 66
  start-page: 016303
  year: 2002
  ident: b9
  publication-title: Phys. Rev. E
– volume: 456
  start-page: 2043
  year: 2000
  ident: b10
  publication-title: Proc. R. Soc. A
– volume: 71
  start-page: 1171
  year: 1993
  end-page: 1177
  ident: b55
  publication-title: J. Stat. Phys.
– volume: 47
  start-page: 241
  year: 1991
  end-page: 259
  ident: b53
  publication-title: Physica D
– volume: 550
  start-page: 413
  year: 2006
  end-page: 441
  ident: b44
  publication-title: J. Fluid Mech.
– volume: 367
  start-page: 2557
  year: 2009
  end-page: 2571
  ident: b24
  publication-title: Phil. Trans. R. Soc. A
– reference: Palabos - CFD Complex Physics (
– volume: 8
  start-page: 343
  year: 1982
  end-page: 360
  ident: b71
  publication-title: Int. J. Multiph. Flow
– volume: 81
  start-page: 379
  year: 1995
  ident: b49
  publication-title: J. Stat. Phys
– volume: 9
  start-page: 795
  year: 1961
  end-page: 801
  ident: b66
  publication-title: Acta Metall.
– year: 2000
  ident: b46
  publication-title: Lattice-Gas Cellular Automata and Lattice Boltzmann Models
– volume: 47
  start-page: 233
  year: 1991
  end-page: 240
  ident: b54
  publication-title: Physica D
– reference: The HDF Group, Hierarchical data format version 5 (2000-2010)
– volume: 456
  start-page: 1431
  year: 2000
  ident: b7
  publication-title: Proc. R. Soc. A
– volume: 362
  start-page: 1703
  year: 2004
  end-page: 1722
  ident: b23
  publication-title: Phil. Trans. R. Soc. A
– start-page: 36
  year: 2011
  end-page: 47
  ident: b65
  publication-title: Proceedings of the EDBT/ICDT 2011 Workshop on Array Databases, AD’11
– reference: E. Breitmoser, J. Chin, C. Dan, F. Dörfler, S. Frijters, G. Giupponi, N. González-Segredo, F. Günther, J. Harting, M. Harvey, M. Hecht, S. Jha, F. Janoschek, F. Jansen, C. Kunert, M. Lujan, I. Murray, A. Narváez, M. Nekovee, A. Porter, F. Raischel, R. Saksena, S. Schmieschek, D. Sinz, M. Venturoli, T. Zauner, LB3D user manual, UCL (
– volume: 80
  start-page: 65
  year: 1998
  end-page: 68
  ident: b43
  publication-title: Phys. Rev. Lett.
– year: 2001
  ident: b35
  publication-title: The Lattice Boltzmann Equation: For Fluid Dynamics and Beyond
– volume: 5
  start-page: 317
  year: 1959
  end-page: 328
  ident: b70
  publication-title: J. Fluid Mech.
– volume: 75
  start-page: 041504
  year: 2007
  ident: b18
  publication-title: Phys. Rev. E
– volume: 68
  start-page: 066614
  year: 2003
  ident: b57
  publication-title: Phys. Rev. E
– volume: 6
  start-page: 9
  year: 2004
  ident: b20
  publication-title: Phys. Rev. E
– volume: 72
  start-page: 124
  year: 2006
  end-page: 127
  ident: b28
  publication-title: Math. Comput. Simulation
– volume: 47
  start-page: 1815
  year: 1993
  end-page: 1819
  ident: b50
  publication-title: Phys. Rev. E
– volume: 6
  start-page: 5
  year: 2004
  ident: b21
  publication-title: Europhys. Lett.
– reference: D. Groen, O. Henrich, F. Janoschek, P.V. Coveney, J. Harting, Lattice-Boltzmann Methods in Fluid Dynamics: Turbulence and Complex Colloidal Fluids, W.F. Bernd Mohr (Ed.), Jülich Blue Gene/P Extreme Scaling Workshop 2011, Jülich Supercomputing Centre, 52425 Jülich, Germany, 2011, fZJ-JSC-IB-2011-02.
– volume: 69
  start-page: 060701
  year: 2004
  ident: b22
  publication-title: Phys. Rev. E
– volume: 5
  start-page: 4446
  year: 2009
  end-page: 4463
  ident: b33
  publication-title: Soft Matter
– volume: 94
  start-page: 511
  year: 1954
  end-page: 525
  ident: b45
  publication-title: Phys. Rev.
– volume: 62
  start-page: 8282
  year: 2000
  end-page: 8294
  ident: b51
  publication-title: Phys. Rev. E
– volume: 33
  start-page: 381
  year: 2006
  end-page: 395
  ident: b60
  publication-title: Comput. Geotech.
– volume: 42
  start-page: 439
  year: 2010
  end-page: 472
  ident: b37
  publication-title: Annu. Rev. Fluid Mech.
– volume: 75
  start-page: 066705
  year: 2007
  end-page: 066712
  ident: b58
  publication-title: Phys. Rev. E
– volume: 87
  start-page: 115
  year: 1997
  end-page: 136
  ident: b56
  publication-title: J. Stat. Phys.
– volume: 462
  start-page: 3575
  year: 2006
  end-page: 3600
  ident: b27
  publication-title: Phil. Trans. R. Soc. A
– reference: N.J. González Segredo, P.V. Coveney, Lattice-Boltzmann and lattice-gas simulations of binary immiscible and ternary amphiphilic fluids in two and three dimensions
– volume: 134
  start-page: 273
  year: 2001
  ident: b1
  publication-title: Comput. Phys. Comm.
– reference: S.M. Pickles, R.J. Blake, B.M. Boghosian, J.M. Brooke, J. Chin, P.E.L. Clarke, P.V. Coveney, N. González-Segredo, R. Haines, J. Harting, M. Harvey, S. Jha, M.A.S. Jones, M. McKeown, R.K. Pinning, A.R. Porter, K. Roy, M. Riding, Proceedings of the Workshop on Case Studies on Grid Applications at GGF 10
– volume: 64
  start-page: 061302
  year: 2001
  ident: b8
  publication-title: Phys. Rev. E
– volume: 178
  start-page: 894
  year: 2008
  end-page: 914
  ident: b2
  publication-title: Comput. Phys. Comm.
– volume: 363
  start-page: 1895
  year: 2005
  ident: b15
  publication-title: Phil. Trans. R. Soc. A
– volume: 72
  start-page: 4756
  year: 1980
  end-page: 4763
  ident: b68
  publication-title: J. Chem. Phys.
– volume: 9
  start-page: 1591
  year: 1997
  end-page: 1598
  ident: b59
  publication-title: Phys. Fluids
– volume: 73
  start-page: 031503
  year: 2006
  ident: b29
  publication-title: Phys. Rev. E
– volume: 56
  start-page: 6811
  year: 1997
  ident: b39
  publication-title: Phys. Rev. E
– volume: 51
  start-page: R2739
  year: 1995
  end-page: R2742
  ident: b48
  publication-title: Phys. Rev. E
– reference: P.V. Coveney, R.S. Saksena, Abstracts of Papers of the American Chemical Society 239 (2010) 473
– volume: vol. 12
  start-page: 39
  year: 2013
  end-page: 49
  ident: b69
  publication-title: High Performance Computing in Science and Engineering
– reference: )
– reference: R.S. Saksena, P.V. Coveney, Parallel Lattice-Boltzmann Simulations for the Investigation of Cubic Phase Rheology at the Petascale. Proceedings of the Teragrid conference 2008 (2008) 92
– volume: 221
  start-page: 89
  year: 2009
  end-page: 166
  ident: b36
  publication-title: Adv. Poly. Sci.
– reference: OpenLB - Open Source Lattice Boltzmann Code (
– reference: Exa Simulation Software Solutions — Exa Corporation (
– volume: 53
  start-page: 743
  year: 1996
  ident: b52
  publication-title: Phys. Rev. E
– volume: 44
  start-page: 417
  year: 2003
  end-page: 434
  ident: b11
  publication-title: Contemp. Phys.
– year: 2004
  ident: b12
  publication-title: Proceedings of the UK E-Science All Hands Meeting
– volume: 65
  start-page: 046308
  year: 2002
  ident: b47
  publication-title: Phys. Rev. E
– volume: 55
  start-page: R6333
  year: 1997
  end-page: R6336
  ident: b38
  publication-title: Phys. Rev. E
– volume: 465
  start-page: 1977
  year: 2009
  end-page: 2002
  ident: b32
  publication-title: Proc. R. Soc. A
– reference: XFlow is a next generation CFD software system from Next Limit Technologies that uses a proprietary, particle-based, meshless approach which can easily handle traditionally complex problems (
– volume: 13
  start-page: 1
  year: 2010
  ident: b62
  publication-title: J. Stat. Mech. Theory Exp.
– volume: 81
  start-page: 379
  year: 1995
  ident: 10.1016/j.cpc.2017.03.013_b49
  publication-title: J. Stat. Phys
  doi: 10.1007/BF02179985
– volume: 456
  start-page: 2043
  year: 2000
  ident: 10.1016/j.cpc.2017.03.013_b10
  publication-title: Proc. R. Soc. A
  doi: 10.1098/rspa.2000.0601
– year: 2004
  ident: 10.1016/j.cpc.2017.03.013_b12
– volume: 68
  start-page: 066614
  year: 2003
  ident: 10.1016/j.cpc.2017.03.013_b57
  publication-title: Phys. Rev. E
  doi: 10.1103/PhysRevE.68.066614
– volume: 75
  start-page: 066705
  year: 2007
  ident: 10.1016/j.cpc.2017.03.013_b58
  publication-title: Phys. Rev. E
  doi: 10.1103/PhysRevE.75.066705
– volume: 72
  start-page: 4756
  year: 1980
  ident: 10.1016/j.cpc.2017.03.013_b68
  publication-title: J. Chem. Phys.
  doi: 10.1063/1.439809
– volume: 69
  start-page: 060701
  year: 2004
  ident: 10.1016/j.cpc.2017.03.013_b22
  publication-title: Phys. Rev. E
  doi: 10.1103/PhysRevE.69.061501
– volume: 51
  start-page: R2739
  year: 1995
  ident: 10.1016/j.cpc.2017.03.013_b48
  publication-title: Phys. Rev. E
  doi: 10.1103/PhysRevE.51.R2739
– volume: 5
  start-page: 4446
  year: 2009
  ident: 10.1016/j.cpc.2017.03.013_b33
  publication-title: Soft Matter
  doi: 10.1039/b911884e
– volume: 47
  start-page: 1815
  year: 1993
  ident: 10.1016/j.cpc.2017.03.013_b50
  publication-title: Phys. Rev. E
  doi: 10.1103/PhysRevE.47.1815
– volume: 80
  start-page: 65
  year: 1998
  ident: 10.1016/j.cpc.2017.03.013_b43
  publication-title: Phys. Rev. Lett.
  doi: 10.1103/PhysRevLett.80.65
– volume: 53
  start-page: 743
  year: 1996
  ident: 10.1016/j.cpc.2017.03.013_b52
  publication-title: Phys. Rev. E
  doi: 10.1103/PhysRevE.53.743
– volume: 71
  start-page: 1171
  year: 1993
  ident: 10.1016/j.cpc.2017.03.013_b55
  publication-title: J. Stat. Phys.
  doi: 10.1007/BF01049965
– ident: 10.1016/j.cpc.2017.03.013_b63
– ident: 10.1016/j.cpc.2017.03.013_b4
– ident: 10.1016/j.cpc.2017.03.013_b25
– volume: 165
  start-page: 97
  year: 2005
  ident: 10.1016/j.cpc.2017.03.013_b26
  publication-title: Comput. Phys. Comm.
  doi: 10.1016/j.cpc.2004.10.001
– volume: 73
  start-page: 031503
  year: 2006
  ident: 10.1016/j.cpc.2017.03.013_b29
  publication-title: Phys. Rev. E
  doi: 10.1103/PhysRevE.73.031503
– volume: 72
  start-page: 124
  year: 2006
  ident: 10.1016/j.cpc.2017.03.013_b28
  publication-title: Math. Comput. Simulation
  doi: 10.1016/j.matcom.2006.05.035
– year: 2000
  ident: 10.1016/j.cpc.2017.03.013_b46
– volume: 7
  start-page: 046304
  year: 2003
  ident: 10.1016/j.cpc.2017.03.013_b16
  publication-title: Phys. Rev. E
  doi: 10.1103/PhysRevE.67.046304
– volume: 55
  start-page: R6333
  year: 1997
  ident: 10.1016/j.cpc.2017.03.013_b38
  publication-title: Phys. Rev. E
  doi: 10.1103/PhysRevE.55.R6333
– volume: 104
  start-page: 1197
  year: 2001
  ident: 10.1016/j.cpc.2017.03.013_b41
  publication-title: J. Stat. Phys.
  doi: 10.1023/A:1010414013942
– volume: 8
  start-page: 343
  year: 1982
  ident: 10.1016/j.cpc.2017.03.013_b71
  publication-title: Int. J. Multiph. Flow
  doi: 10.1016/0301-9322(82)90047-7
– volume: 9
  start-page: 1591
  year: 1997
  ident: 10.1016/j.cpc.2017.03.013_b59
  publication-title: Phys. Fluids
  doi: 10.1063/1.869307
– volume: 17
  start-page: 479
  year: 1992
  ident: 10.1016/j.cpc.2017.03.013_b42
  publication-title: Europhys. Lett.
  doi: 10.1209/0295-5075/17/6/001
– volume: 550
  start-page: 413
  year: 2006
  ident: 10.1016/j.cpc.2017.03.013_b44
  publication-title: J. Fluid Mech.
  doi: 10.1017/S0022112005008153
– ident: 10.1016/j.cpc.2017.03.013_b64
– volume: 6
  start-page: 5
  year: 2004
  ident: 10.1016/j.cpc.2017.03.013_b21
  publication-title: Europhys. Lett.
– ident: 10.1016/j.cpc.2017.03.013_b3
– volume: 362
  start-page: 1703
  year: 2004
  ident: 10.1016/j.cpc.2017.03.013_b23
  publication-title: Phil. Trans. R. Soc. A
  doi: 10.1098/rsta.2004.1402
– volume: 94
  start-page: 511
  year: 1954
  ident: 10.1016/j.cpc.2017.03.013_b45
  publication-title: Phys. Rev.
  doi: 10.1103/PhysRev.94.511
– volume: 47
  start-page: 241
  year: 1991
  ident: 10.1016/j.cpc.2017.03.013_b53
  publication-title: Physica D
  doi: 10.1016/0167-2789(91)90295-K
– year: 2001
  ident: 10.1016/j.cpc.2017.03.013_b35
– volume: 13
  start-page: 1
  year: 2010
  ident: 10.1016/j.cpc.2017.03.013_b62
  publication-title: J. Stat. Mech. Theory Exp.
– volume: 2009
  start-page: P06015
  year: 2009
  ident: 10.1016/j.cpc.2017.03.013_b61
  publication-title: J. Stat. Mech. Theory Exp.
  doi: 10.1088/1742-5468/2009/06/P06015
– volume: 87
  start-page: 115
  year: 1997
  ident: 10.1016/j.cpc.2017.03.013_b56
  publication-title: J. Stat. Phys.
  doi: 10.1007/BF02181482
– volume: 62
  start-page: 8282
  year: 2000
  ident: 10.1016/j.cpc.2017.03.013_b51
  publication-title: Phys. Rev. E
  doi: 10.1103/PhysRevE.62.8282
– volume: 33
  start-page: 381
  year: 2006
  ident: 10.1016/j.cpc.2017.03.013_b60
  publication-title: Comput. Geotech.
  doi: 10.1016/j.compgeo.2006.08.002
– volume: 465
  start-page: 1977
  year: 2009
  ident: 10.1016/j.cpc.2017.03.013_b32
  publication-title: Proc. R. Soc. A
  doi: 10.1098/rspa.2008.0479
– volume: 9
  start-page: 795
  year: 1961
  ident: 10.1016/j.cpc.2017.03.013_b66
  publication-title: Acta Metall.
  doi: 10.1016/0001-6160(61)90182-1
– volume: 5
  start-page: 317
  year: 1959
  ident: 10.1016/j.cpc.2017.03.013_b70
  publication-title: J. Fluid Mech.
  doi: 10.1017/S0022112059000222
– ident: 10.1016/j.cpc.2017.03.013_b6
– volume: 134
  start-page: 273
  year: 2001
  ident: 10.1016/j.cpc.2017.03.013_b1
  publication-title: Comput. Phys. Comm.
  doi: 10.1016/S0010-4655(00)00205-8
– volume: 112
  start-page: 2950
  year: 2008
  ident: 10.1016/j.cpc.2017.03.013_b31
  publication-title: J. Phys. Chem. B
  doi: 10.1021/jp0731506
– volume: 47
  start-page: 233
  year: 1991
  ident: 10.1016/j.cpc.2017.03.013_b54
  publication-title: Physica D
  doi: 10.1016/0167-2789(91)90294-J
– volume: 44
  start-page: 417
  year: 2003
  ident: 10.1016/j.cpc.2017.03.013_b11
  publication-title: Contemp. Phys.
  doi: 10.1080/00107510310001605046
– volume: 65
  start-page: 046308
  year: 2002
  ident: 10.1016/j.cpc.2017.03.013_b47
  publication-title: Phys. Rev. E
  doi: 10.1103/PhysRevE.65.046308
– volume: 178
  start-page: 894
  year: 2008
  ident: 10.1016/j.cpc.2017.03.013_b2
  publication-title: Comput. Phys. Comm.
  doi: 10.1016/j.cpc.2008.02.013
– start-page: 36
  year: 2011
  ident: 10.1016/j.cpc.2017.03.013_b65
– volume: 75
  start-page: 041504
  year: 2007
  ident: 10.1016/j.cpc.2017.03.013_b18
  publication-title: Phys. Rev. E
  doi: 10.1103/PhysRevE.75.041504
– volume: 462
  start-page: 3575
  year: 2006
  ident: 10.1016/j.cpc.2017.03.013_b27
  publication-title: Phil. Trans. R. Soc. A
– volume: 10
  start-page: 179
  year: 1962
  ident: 10.1016/j.cpc.2017.03.013_b67
  publication-title: Acta Metall.
  doi: 10.1016/0001-6160(62)90114-1
– volume: 64
  start-page: 061302
  year: 2001
  ident: 10.1016/j.cpc.2017.03.013_b8
  publication-title: Phys. Rev. E
  doi: 10.1103/PhysRevE.64.061302
– ident: 10.1016/j.cpc.2017.03.013_b30
– volume: vol. 12
  start-page: 39
  year: 2013
  ident: 10.1016/j.cpc.2017.03.013_b69
– ident: 10.1016/j.cpc.2017.03.013_b13
– start-page: 457
  year: 2008
  ident: 10.1016/j.cpc.2017.03.013_b19
– ident: 10.1016/j.cpc.2017.03.013_b34
– ident: 10.1016/j.cpc.2017.03.013_b17
– volume: 221
  start-page: 89
  year: 2009
  ident: 10.1016/j.cpc.2017.03.013_b36
  publication-title: Adv. Poly. Sci.
– volume: 6
  start-page: 9
  year: 2004
  ident: 10.1016/j.cpc.2017.03.013_b20
  publication-title: Phys. Rev. E
– volume: 56
  start-page: 6811
  year: 1997
  ident: 10.1016/j.cpc.2017.03.013_b39
  publication-title: Phys. Rev. E
  doi: 10.1103/PhysRevE.56.6811
– volume: 363
  start-page: 1895
  year: 2005
  ident: 10.1016/j.cpc.2017.03.013_b15
  publication-title: Phil. Trans. R. Soc. A
  doi: 10.1098/rsta.2005.1618
– volume: 66
  start-page: 016303
  year: 2002
  ident: 10.1016/j.cpc.2017.03.013_b9
  publication-title: Phys. Rev. E
  doi: 10.1103/PhysRevE.66.016303
– volume: 42
  start-page: 439
  year: 2010
  ident: 10.1016/j.cpc.2017.03.013_b37
  publication-title: Annu. Rev. Fluid Mech.
  doi: 10.1146/annurev-fluid-121108-145519
– volume: 456
  start-page: 1431
  year: 2000
  ident: 10.1016/j.cpc.2017.03.013_b7
  publication-title: Proc. R. Soc. A
  doi: 10.1098/rspa.2000.0570
– volume: 13
  start-page: 1
  year: 2005
  ident: 10.1016/j.cpc.2017.03.013_b14
  publication-title: Sci. Program.
– volume: 57
  start-page: R13
  year: 1998
  ident: 10.1016/j.cpc.2017.03.013_b40
  publication-title: Phys. Rev. E
  doi: 10.1103/PhysRevE.57.R13
– ident: 10.1016/j.cpc.2017.03.013_b5
– volume: 367
  start-page: 2557
  year: 2009
  ident: 10.1016/j.cpc.2017.03.013_b24
  publication-title: Phil. Trans. R. Soc. A
  doi: 10.1098/rsta.2009.0049
SSID ssj0007793
Score 2.4484448
Snippet We introduce the lattice-Boltzmann code LB3D, version 7.1. Building on a parallel program and supporting tools which have enabled research utilising high...
SourceID unpaywall
crossref
elsevier
SourceType Open Access Repository
Enrichment Source
Index Database
Publisher
StartPage 149
SubjectTerms High performance computing
Lattice-Boltzmann method
LB3D
LBM
Multiphase flow
SummonAdditionalLinks – databaseName: Unpaywall
  dbid: UNPAY
  link: http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwrV3da9RAEF_kivik9QsrteyDT8reJdlv366tpUgtPnhQn8J-6tVcLngJxf71zl6SUgQrgo-B2d0sM8z8dnfmNwi9NjZYY_NACik0Yc57oqyCT4DaMQYmhE21wx_PxemCfbjgF0N5dKqFGShuvk3bDg7n1SzUs-bW_dVMCW8kC5pwoyhhXltivFbEZTbSwsLcHBzyjuCAzCdoZ3H-af6ld8YZSVRh6fylpCaFZmx85Nyme7kmERrmckt5mtM_hakHXd2Yn1emqm6FoZNHaDVuoM8--T7tWjt1179xO_6vHe6ihwNexfPewB6je6F-gu5v80bd5ilqzg7p8Ts8x4lCvKpChZerMSM9LYTXEQPExGemTVl25HBdtdcrU9e4b12NATPjzXI1NBFL4onAYlu6VX_FBmxt2aQ7H4dj1S395hlanLz_fHRKhiYOxFGWtfDbToM1hCJySfOYc8msNMoJpxzn1CY-RiVyC0AhaG94EFYlinhuowdHXNDnaFKv6_AC4fTkK2Puo3aCcZUbboogA4xXLspM7qFs1FnpBobz1GijKsdUtssS1FwmNZcZLUHNe-jNzZCmp_e4S5iNhlAO-KTHHSWEn7uGvb0xmr8v8vKfpPfRpP3RhVcAjFp7MNj7L-hIDFc
  priority: 102
  providerName: Unpaywall
Title LB3D: A parallel implementation of the Lattice-Boltzmann method for simulation of interacting amphiphilic fluids
URI https://dx.doi.org/10.1016/j.cpc.2017.03.013
https://research.tue.nl/en/publications/86da74e9-5a83-4d9b-ad98-c0bf32b46652
UnpaywallVersion submittedVersion
Volume 217
hasFullText 1
inHoldings 1
isFullTextHit
isPrint
journalDatabaseRights – providerCode: PRVESC
  databaseName: Baden-Württemberg Complete Freedom Collection (Elsevier)
  customDbUrl:
  eissn: 1879-2944
  dateEnd: 99991231
  omitProxy: true
  ssIdentifier: ssj0007793
  issn: 1879-2944
  databaseCode: GBLVA
  dateStart: 20110101
  isFulltext: true
  titleUrlDefault: https://www.sciencedirect.com
  providerName: Elsevier
– providerCode: PRVESC
  databaseName: Elsevier SD Complete Freedom Collection [SCCMFC]
  customDbUrl:
  eissn: 1879-2944
  dateEnd: 99991231
  omitProxy: true
  ssIdentifier: ssj0007793
  issn: 1879-2944
  databaseCode: ACRLP
  dateStart: 19950101
  isFulltext: true
  titleUrlDefault: https://www.sciencedirect.com
  providerName: Elsevier
– providerCode: PRVESC
  databaseName: Elsevier SD Freedom Collection
  customDbUrl:
  eissn: 1879-2944
  dateEnd: 99991231
  omitProxy: true
  ssIdentifier: ssj0007793
  issn: 1879-2944
  databaseCode: .~1
  dateStart: 19950101
  isFulltext: true
  titleUrlDefault: https://www.sciencedirect.com
  providerName: Elsevier
– providerCode: PRVESC
  databaseName: ScienceDirect Freedom Collection Journals
  customDbUrl:
  eissn: 1879-2944
  dateEnd: 99991231
  omitProxy: true
  ssIdentifier: ssj0007793
  issn: 1879-2944
  databaseCode: AIKHN
  dateStart: 19950101
  isFulltext: true
  titleUrlDefault: https://www.sciencedirect.com
  providerName: Elsevier
– providerCode: PRVLSH
  databaseName: Elsevier Journals
  customDbUrl:
  mediaType: online
  eissn: 1879-2944
  dateEnd: 99991231
  omitProxy: true
  ssIdentifier: ssj0007793
  issn: 1879-2944
  databaseCode: AKRWK
  dateStart: 19690701
  isFulltext: true
  providerName: Library Specific Holdings
link http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwnV1LS8QwEA6iiF7EJ64vcvCkVNtt03S9rS9WVxcRF_VUkjSRSrdb3C6iB3-7M334OKjgKaQkpMwMM0PyzTeEbAuppZCOtprcb1meiiIrkAFMIdU2Rnu-L7F2-LLnd_re-R27myBHdS0Mwior31_69MJbV1_2K2nuZ3GMNb74PgkRH40UDAsr2D2OXQz23j5hHpxXxLvgb3B1_bJZYLxUhiyGDi94Th33p9g0M04z8fIskuRL7DmdJ3NV0kjb5X8tkAmdLpLpArypRkskuzh0jw9omyKPd5LohMaDGhaOcqdDQyHPoxciR6ibdThM8teBSFNa9o-mkLjSUTyoOnnhcmSRKOqn0gcqQOFxhhcvippkHEejZdI_Pbk56lhVJwVLuZ6dW8pWLVCJbhrGXcc4jHuSi0D5KlCMuRJJEQPfkRCtdSsSTPsyQJ52Jk0E3rDprpDJdJjqVULx3ZUbJzIt5XsscAQTTc017A-U4TZvELuWYagqmnHsdpGENZ7sMQSxhyj20HZDEHuD7HxsyUqOjd8We7Viwm-GEkIM-G3b7ocS_z5k7X-HrJNZnJX4wA0ymT-N9SbkLLncKoxyi0y1z7qdHo7d69sujP3eVfv-HRCL7m4
linkProvider Elsevier
linkToHtml http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwnV1LT8MwDI4GCI0L4ine5MAJVOgrTceNpwaMnTZptyhJE1TUdRXrhODAbyfuY8CBIXFsmyiVbdlu_fkzQkdcKMGFoyyXBi3Ll1FkhSI0lybV1lr5QSCgd_ixG7T7_v2ADBroqu6FAVhl5ftLn1546-rOWSXNsyyOoccX6pMm4oORGsOaQws-cSl8gZ1-fOE8KK2Yd43DgeV1abMAeckMaAwdWhCdOt5vwak5STP-9sqT5FvwuV1By1XWiC_KF1tFDZWuocUCvSnH6yjrXHrX5_gCA5F3kqgEx8MaFw6CxyONTaKHOzwHrJt1OUry9yFPU1wOkMYmc8XjeFiN8oLlQCNRNFClT5gbjccZ_HmRWCeTOBpvoP7tTe-qbVWjFCzp-XZuSVu2jE6Uqwn1HO0Q6gvKQxnIUBLiCWBFDANHmHCtWhEnKhAhELUToSPjDl1vE82no1RtIQyFV6qdSLdk4JPQ4YS7iiqzP5Sa2nQb2bUMmax4xmHcRcJqQNkzM2JnIHZme8yIfRsdT7dkJcnGrMV-rRj2w1KYCQKztp1Mlfj3ITv_O-QQNdu9xw7r3HUfdtESPCnBgntoPn-ZqH2TwOTioDDQT8Pi7LA
linkToUnpaywall http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwrV3da9RAEF_kivik9QsrteyDT8reJdlv366tpUgtPnhQn8J-6tVcLngJxf71zl6SUgQrgo-B2d0sM8z8dnfmNwi9NjZYY_NACik0Yc57oqyCT4DaMQYmhE21wx_PxemCfbjgF0N5dKqFGShuvk3bDg7n1SzUs-bW_dVMCW8kC5pwoyhhXltivFbEZTbSwsLcHBzyjuCAzCdoZ3H-af6ld8YZSVRh6fylpCaFZmx85Nyme7kmERrmckt5mtM_hakHXd2Yn1emqm6FoZNHaDVuoM8--T7tWjt1179xO_6vHe6ihwNexfPewB6je6F-gu5v80bd5ilqzg7p8Ts8x4lCvKpChZerMSM9LYTXEQPExGemTVl25HBdtdcrU9e4b12NATPjzXI1NBFL4onAYlu6VX_FBmxt2aQ7H4dj1S395hlanLz_fHRKhiYOxFGWtfDbToM1hCJySfOYc8msNMoJpxzn1CY-RiVyC0AhaG94EFYlinhuowdHXNDnaFKv6_AC4fTkK2Puo3aCcZUbboogA4xXLspM7qFs1FnpBobz1GijKsdUtssS1FwmNZcZLUHNe-jNzZCmp_e4S5iNhlAO-KTHHSWEn7uGvb0xmr8v8vKfpPfRpP3RhVcAjFp7MNj7L-hIDFc
openUrl ctx_ver=Z39.88-2004&ctx_enc=info%3Aofi%2Fenc%3AUTF-8&rfr_id=info%3Asid%2Fsummon.serialssolutions.com&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&rft.genre=article&rft.atitle=LB3D%3A+A+parallel+implementation+of+the+Lattice-Boltzmann+method+for+simulation+of+interacting+amphiphilic+fluids&rft.jtitle=Computer+physics+communications&rft.au=Schmieschek%2C+S.&rft.au=Shamardin%2C+L.&rft.au=Frijters%2C+S.&rft.au=Kr%C3%BCger%2C+T.&rft.date=2017-08-01&rft.issn=0010-4655&rft.volume=217&rft.spage=149&rft.epage=161&rft_id=info:doi/10.1016%2Fj.cpc.2017.03.013&rft.externalDBID=n%2Fa&rft.externalDocID=10_1016_j_cpc_2017_03_013
thumbnail_l http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/lc.gif&issn=0010-4655&client=summon
thumbnail_m http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/mc.gif&issn=0010-4655&client=summon
thumbnail_s http://covers-cdn.summon.serialssolutions.com/index.aspx?isbn=/sc.gif&issn=0010-4655&client=summon