[1] 何雅玲,王勇,李庆. 格子Boltzmann方法的理论及应用 [M]. 北京:科学出版社,2009. [2] SUCCI S,BENZI R,MASSAIOLI F. A review of the lattice Boltzmann method [J]. International Journal of Modern Physics C,1993,4(2):409-415. [3] CHEN S Y,DOOLEN G D. Lattice Boltzmann method for fluid flows [J]. Annual Review of Fluid Mechanics,1998,30(1):329-364. [4] 李楠,史俊瑞,肖红侠,等. 格子Boltzmann方法研究及其应用 [J]. 沈阳工程学院学报(自然科学版),2015(2):116-118,122. [5] SUKOP M C,THORNE D T. Lattice Boltzmann modeling:an introduction for geoscientists and engineers [M]. Springer,2006. [6] GAO Y,SHARMA M. A LGA model for fluid flow in heterogeneous porous media [J]. Transport in Porous Media,1994,17(1):1-17. [7] DARDIS O,MCCLOSKEY J. Lattice Boltzmann scheme with real numbered solid density for the simulation of flow in porous media [J]. Physical Review E,1998,57(4):4834-4837. [8] THORNE D T,SUKOP M C. Lattice Boltzmann model for the Elder problem [J]. Developments in Water Science,2004,55:1549-1557. [9] WALSH S D,BURWINKLE H,SAAR M O. A new partial-bounceback lattice-Boltzmann method for fluid flow through heterogeneous media [J]. Computers & Geosciences,2009,35(6):1186-1193. [10] YEHYA A,NAJI H,SUKOP M. Simulating flows in multi-layered and spatially-variable permeability media via a new Gray Lattice Boltzmann model [J]. Computers and Geotechnics,2015,70:150-158. [11] ZHU J J,MA J S. An improved gray lattice Boltzmann model for simulating fluid flow in multi-scale porous media [J]. Advances in Water Resources,2013,56:61-76. [12] SPAID M A,PHELAN JR F R. Lattice Boltzmann methods for modeling microscale flow in fibrous porous media [J]. Physics of Fluids,1997,9(9):2468-2474. [13] FREED D M. Lattice-Boltzmann method for macroscopic porous media modeling [J]. International Journal of Modern Physics C,1998,9(8):1491-1503. [14] KANG Q,ZHANG D,CHEN S. Displacement of a two-dimensional immiscible droplet in a channel [J]. Physics of Fluids,2002,14(9):3203-3214. [15] SHAN X W,CHEN H D. Lattice Boltzmann model for simulating flows with multiple phases and components [J]. Physical Review E,1993,47(3):1815. [16] LI J,BROWN D. Upscaled Lattice Boltzmann method for simulations of flows in heterogeneous porous media [J]. arXiv preprint arXiv:13120195,2013, [17] ILIEV O,EFENDIEV Y,LI J,et al. Multiscale Lattice Boltzmann Method for flow simulations in highly heterogenous porous media[C]//proceedings of the SPE Reservoir Characterization and Simulation Conference and Exhibition,Society of Petroleum Engineers,2013. [18] MARTYS N S. Improved approximation of the Brinkman equation using a lattice Boltzmann method [J]. Physics of Fluids,2001,13(6):1807-1810. [19] GUO Z L,ZHAO T S. Lattice Boltzmann model for incompressible flows through porous media [J]. Physical Review E,2002,66(3):036304. [20] ZARGHAMI A,BISCARINI C,SUCCI S,et al. Hydrodynamics in porous media:a finite volume lattice Boltzmann study [J]. Journal of Scientific Computing,2014,59(1):80-103. [21] ZHANG J F,WANG L M,OUYANG J. Lattice Boltzmann model for the volume-averaged Navier-Stokes equations [J]. Europhysics Letters,2014,107(3):20001. [22] CHEN Y L,ZHU K Q. A study of the upper limit of solid scatters density for gray Lattice Boltzmann Method [J]. Acta Mechanica Sinica,2008,24(5):515-522. [23] NITHIARASU P,SEETHARAMU K,SUNDARARAJAN T. Natural convective heat transfer in a fluid saturated variable porosity medium [J]. International Journal of Heat and Mass Transfer,1997,40(16):3955-3967. [24] LUO L S. Unified theory of lattice Boltzmann models for nonideal gases [J]. Physical Review Letters,1998,81(8):1618. [25] GUO Z L,ZHENG C G,SHI B C. Discrete lattice effects on the forcing term in the lattice Boltzmann method [J]. Physical Review E,Statistical,Nonlinear,and Soft Matter Physics,2002,65(4 Pt 2B):046308. [26] 雷鸣. 关于两种REV尺度多孔介质LBE模型的讨论 [J]. 科学技术与工程,2011(20):4814-4820. [27] CHEN L,FANG W Z,KANG Q J,et al. Generalized lattice Boltzmann model for flow through tight porous media with Klinkenberg's effect [J]. Physical Review E,2015,91(3):033004. [28] BESKOK A,KARNIADAKIS G E. Report:a model for flows in channels,pipes,and ducts at micro and nano scales [J]. Microscale Thermophysical Engineering,1999,3(1):43-77. [29] CHEN L,KANG Q,DAI Z,et al. Permeability prediction of shale matrix reconstructed using the elementary building block model [J]. Fuel,2015,160:346-356. [30] 樊火. 土体饱和渗流的Lattice Boltzmann Method数值模拟研究 [D]. 长沙:长沙理工大学,2009. [31] 申林方,王志良,李邵军. 基于格子博尔兹曼方法表征体元尺度土体细观渗流场的数值模拟 [J]. 岩土力学,2015(s2):689- 694. [32] KANG Q J,ZHANG D X,CHEN S Y. Unified lattice Boltzmann method for flow in multiscale porous media [J]. Physical Review E,2002,66(5):056307. [33] HE X Y,LUO L S,DEMBO M. Some progress in lattice Boltzmann method. Part I. Nonuniform mesh grids [J]. Journal of Computational Physics,1996,129(2):357-363. [34] GAO J F,XING H L,LI Q,et al. Scale effect of 3d heterogeneous porous media on geo-fluid characteristics[C]//Insight from Massively Parallel Lattice Boltzmann Computing. proceedings of the SPE Unconventional Resources Conference and Exhibition-Asia Pacific,Society of Petroleum Engineers ,2013. [35] GAO J,XING H,TIAN Z,et al. Lattice Boltzmann modeling and evaluation of fluid flow in heterogeneous porous media involving multiple matrix constituents [J]. Computers & Geosciences,2014,62:198-207. [36] GAO J,XING H,RUDOLPH V,et al. Parallel lattice boltzmann computing and applications in core sample feature evaluation [J]. Transport in Porous Media,2015,107(1):65-77. [37] TANG G H,YE P X,TAO W Q. Pressure-driven and electroosmotic non-Newtonian flows through microporous media via lattice Boltzmann method [J]. Journal of Non-Newtonian Fluid Mechanics,2010,165(21):1536-1542. [38] HUANG H,SUKOP M,LU X. Multiphase lattice Boltzmann methods:theory and application [M]. New York:John Wiley & Sons,2015. [39] SPAID M A A,PHELAN F R. Modeling void formation dynamics in fibrous porous media with the lattice Boltzmann method [J]. Compos Part A-Appl S,1998,29(7):749-755. [40] SCHAAP M G,PORTER M L,CHRISTENSEN B S,et al. Comparison of pressure‐saturation characteristics derived from computed tomography and lattice Boltzmann simulations [J]. Water Resources Research,2007,43(12).DOI:10.1029/2006WR005730. [41] PORTER M L,SCHAAP M G,WILDENSCHILD D. Lattice-Boltzmann simulations of the capillary pressure–saturation–interfacial area relationship for porous media [J]. Advances in Water Resources,2009,32(11):1632-1640. [42] LIU Q,HE Y L. Multiple-relaxation-time lattice Boltzmann modeling of incompressible flows in porous media [J]. Physica A:Statistical Mechanics and its Applications,2015,429:215-230. [43] WANG L,WANG L P,GUO Z,et al. Volume-averaged macroscopic equation for fluid flow in moving porous media [J]. International Journal of Heat and Mass Transfer,2015,82:357-368. [44] 何莹松. 基于格子Boltzmann方法的多孔介质流体渗流模拟 [J]. 科技通报,2013(4):118-120. [45] GUO Z L,ZHAO T S. A lattice Boltzmann model for convection heat transfer in porous media [J]. Numerical Heat Transfer,Part B,2005,47(2):157-177. [46] XU Y S,WANG R M,LI G N,et al. Numerical simulation of driven convective heat transfer based lattice boltzmann method in a porous cavity [J]. Journal of Chemistry,2015,501:710341. [47] SETA T,TAKEGOSHI E,OKUI K. Lattice Boltzmann simulation of natural convection in porous media [J]. Mathematics and Computers in Simulation,2006,72(2):195-200. [48] CHAI Z H,GUO Z L,SHI B C. Lattice Boltzmann simulation of mixed convection in a driven cavity packed with porous medium [C]//computational science–ICCS 2007,Springer,2007:802-809. [49] 万斌,罗成龙. 格子-Boltzmann方法模拟多孔介质内自然对流蓄热过程 [J]. 南昌大学学报(工科版),2012(2):165-167+171. [50] YAN W W,LIU Y,GUO Z L,et al. Lattice Boltzmann simulation on natural convection heat transfer in a two-dimensional cavity filled with heterogeneously porous medium [J]. International Journal of Modern Physics C,2006,17(6):771-783. [51] 许超敏. 用格子Boltzmann方法模拟热流动 [D]. 长春:吉林大学,2010. [52] ZARGHAMI A,FRANCESCO S D,BISCARINI C. Porous substrate effects on thermal flows through a REV-scale finite volume lattice Boltzmann model [J]. International Journal of Modern Physics C,2014,25(2):1350086. [53] SHOKOUHMAND H,JAM F,SALIMPOUR M. Simulation of laminar flow and convective heat transfer in conduits filled with porous media using Lattice Boltzmann Method [J]. International Communications in Heat and Mass Transfer,2009,36(4):378-384. [54] 鲁建华. 基于格子Boltzmann方法的多孔介质内流动与传热的微观模拟 [D]. 武汉:华中科技大学,2009. [55] 邵九姑. 用格子Boltzmann方法模拟研究多孔介质中的传质传热问题 [D]. 杭州:浙江师范大学,2012. [56] 陈柔. 格子Boltzmann方法的若干应用 [D]. 杭州:浙江师范大学,2013. [57] RONG F M,GUO Z L,CHAI Z H,et al. A lattice Boltzmann model for axisymmetric thermal flows through porous media [J]. International Journal of Heat and Mass Transfer,2010,53(23):5519-5527. [58] 荣伏梅. 基于格子Boltzmann方法的多孔介质REV尺度的流动与强化传热研究 [D]. 武汉:华中科技大学,2011. [59] RONG F M,ZHANG W H,SHI B C,et al. Numerical study of heat transfer enhancement in a pipe filled with porous media by axisymmetric TLB model based on GPU [J]. International Journal of Heat and Mass Transfer,2014,70:1040-1049. [60] LIU Q,HE Y L,LI Q,et al. A multiple-relaxation-time lattice Boltzmann model for convection heat transfer in porous media [J]. International Journal of Heat and Mass transfer,2014,73:761-775. [61] LIU Q,HE Y L,LI Q. Multiple-relaxation-time lattice Boltzmann model for simulating axisymmetric thermal flows in porous media [J]. arXiv preprint arXiv:14095929,2014. [62] TIAN Z W,XING H L,TAN Y L,et al. A coupled lattice Boltzmann model for simulating reactive transport in CO2 injection [J]. Physica A:Statistical Mechanics and its Applications,2014,403: 155-164. [63] LIAO Q,YANG Y X,ZHU X,et al. Lattice Boltzmann simulation of substrate solution through a porous granule immobilized PSB-cell for biohydrogen production [J]. International Journal of Hydrogen Energy,2013,38(35):15700-15709. [64] 杨艳霞. 含光生化反应的多孔介质内流动及传输特性的格子Boltzmann模拟 [D]. 重庆:重庆大学,2013. [65] XU H,DANG Z,BAI B F. Numerical simulation of multispecies mass transfer in a SOFC electrodes layer using lattice Boltzmann method [J]. Journal of Fuel Cell Science and Technology,2012,9(6):061004. [66] XU H,DANG Z,BAI B F. Electrochemical performance study of solid oxide fuel cell using lattice Boltzmann method [J]. Energy,2014,67:575-583. [67] XU Y S,ZHONG Y J,HUANG G X. Lattice Boltzmann method for diffusion-reaction-transport processes in heterogeneous porous media [J]. Chinese Physics Letters,2004,21(7):1298. [68] YAN W W,SU Z D,ZHANG H J. Effect of non‐isothermal condition on heterogeneous flow through biofilter media by lattice Boltzmann simulation [J]. Journal of Chemical Technology and Biotechnology,2013,88(3):456-461. [69] GAO D Y,CHEN Z Q. Lattice Boltzmann simulation of natural convection dominated melting in a rectangular cavity filled with porous media [J]. International Journal of Thermal Sciences,2011,50(4):493-501. [70] 李霞. 用Lattice Boltzmann方法处理传热传质中的固液相变问题 [D]. 杭州:浙江师范大学,2011. [71] JOURABIAN M,FARHADI M,DARZI A A R. Lattice Boltzmann investigation for enhancing the thermal conductivity of ice using Al2O3 porous matrix [J]. International Journal of Computational Fluid Dynamics,2012,26(9/10):451-462. [72] EL ABRACH H,DHAHRI H,MHIMID A. Numerical Simulation of Drying of a Saturated Deformable Porous Media by the Lattice Boltzmann Method [J]. Transport in Porous Media,2013,99(3):427-452. [73] LIU Q,HE Y L. Double multiple-relaxation-time lattice Boltzmann model for solid-liquid phase change with natural convection in porous media [J]. arXiv preprint arXiv:150308406,2015. [74] 蔡睿贤,苟晨华,张娜. 多孔介质中考虑各向异性自然对流Brinkman模型的解析解(Ⅱ) [J]. 中国科学G辑:物理学、力学、天文学,2005(2):113-120. [75] 蔡睿贤,张娜. 多孔介质中自然对流Brinkman模型的解析解 [J]. 中国科学(A辑),2002(6):566-573. |