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Free convection of nanofluid filled enclosure using lattice Boltzmann method (LBM) 被引量:9
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作者 M.SHEIKHOLESLAMI M.GORJI-BANDPY G.DOMAIRRY 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2013年第7期833-846,共14页
The lattice Boltzmann method (LBM) is used to examine free convection of nanofluids. The space between the cold outer square and heated inner circular cylinders is filled with water including various kinds of nanopa... The lattice Boltzmann method (LBM) is used to examine free convection of nanofluids. The space between the cold outer square and heated inner circular cylinders is filled with water including various kinds of nanoparticles: TiO2, Ag, Cu, and A1203. The Brinkman and Maxwell-Garnetts models are used to simulate the viscosity and the effective thermal conductivity of nanofluids, respectively. Results from the performed numerical analysis show good agreement with those obtained from other numerical meth- ods. A variety of the Rayleigh number, the nanoparticle volume fraction, and the aspect ratio are examined. According to the results, choosing copper as the nanoparticle leads to obtaining the highest enhancement for this problem. The results also indicate that the maximum value of enhancement occurs at λ =2.5 when Ra = 106 while at A = 1.5 for other Rayleigh numbers. 展开更多
关键词 lattice boltzmann method lbM) NANOFLUID natural convection concentric annular cavity
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基于PFM-LBM的冻土渗透特性介观尺度数值研究
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作者 胡裕洋 孙宸章 +2 位作者 颜瀚 滕继东 张升 《岩土工程学报》 北大核心 2026年第1期54-64,共11页
土体冻胀现象的核心是冻土中水分的迁移和相变,而冻土渗透系数是理解该过程的关键参数。冻土对温度和流体的高度敏感性使得物理实测其渗透系数存在很大困难,因此从介观尺度开发可靠的数值分析方法是非常有益的探索。首先利用级配曲线重... 土体冻胀现象的核心是冻土中水分的迁移和相变,而冻土渗透系数是理解该过程的关键参数。冻土对温度和流体的高度敏感性使得物理实测其渗透系数存在很大困难,因此从介观尺度开发可靠的数值分析方法是非常有益的探索。首先利用级配曲线重构了土样的多孔介质结构,从介观尺度提出了一个研究冻土渗透特性的PFM-LBM耦合的介观数值方法。基于已有的试验数据和解析模型,对模型进行验证,表明该方法可以高效准确地预测饱和冻土渗透系数。在此基础上研究了未冻水含量、不同成冰方式等因素对冻土渗透特性的影响,结果显示未冻水含量对冻土的渗透系数有显著影响,集中反映在流体相对比界面长度Rf和迂曲度τf的增加。孔隙填充和颗粒包覆两者成冰方式对冻土渗透系数的影响也存在差异:前者与Rf的联系更加紧密;而后者则是随着未冻水含量的减小,τf的影响越来越突出。 展开更多
关键词 饱和冻土 相场法 格子boltzmann方法 渗透特性 介观尺度
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Investigation of Droplet Impact on Hot Surfaces Based on Thermal Lattice Boltzmann Method
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作者 Xiaoyan Zhuo YukunJi +2 位作者 Yatao Ren Xuehui Wang Hong Qi 《Frontiers in Heat and Mass Transfer》 2025年第6期1701-1720,共20页
Flow and heat transfer characteristics during droplet impact on hot walls are pivotal for elucidating the mechanisms of spray cooling and exploring pathways for heat transfer enhancement.When the wall temperature exce... Flow and heat transfer characteristics during droplet impact on hot walls are pivotal for elucidating the mechanisms of spray cooling and exploring pathways for heat transfer enhancement.When the wall temperature exceeds the Leidenfrost point,a vapor film forms between the droplet and the wall,rendering the heat transfer process highly complex.Furthermore,for droplet impact on curved walls,the presence of curvature introduces additional factors that modify the spreading behavior of the droplet and necessitate in-depth analysis.Therefore,this work investigates the flow and heat transfer dynamics of droplet impact on hot planes and curved surfaces numerically via a pseudopotential multiple-relaxation-time Lattice Boltzmann model.The results reveal that the maximum spreading factor increases with the Weber number,diameter ratio,and Bond number,and marginally with the contact angle.Moreover,the time required to achieve the maximumspreading factor increaseswith the contact angle.This relationship exhibits a V-shaped trend due to gravitational effects.Furthermore,the total surface heat flux increases with theWeber number but decreases with the contact angle.The results advance the fundamental understanding of droplet impact dynamics on hot curved surfaces,providing practical insights for optimizing spray cooling performance and thermal management systems. 展开更多
关键词 Droplet impact lattice boltzmann method pseudopotential model curved wall
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Liquid–Vapor phase separation under shear by a pseudopotential lattice Boltzmann method
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作者 Chuandong Lin Sisi Shen +2 位作者 Shuange Wang Guoxing Hou Linlin Fei 《Communications in Theoretical Physics》 2025年第7期193-206,共14页
In this paper,the liquid–vapor phase separation under viscous shear is investigated by using a pseudopotential central moment lattice Boltzmann method.Physically,the multiphase shear flow is governed by two competing... In this paper,the liquid–vapor phase separation under viscous shear is investigated by using a pseudopotential central moment lattice Boltzmann method.Physically,the multiphase shear flow is governed by two competing mechanisms:surface tension and shear force.It is interesting to find that the liquid tends to form a droplet when the surface tension dominates under conditions of low temperature,shear velocity,and viscosity,and in larger domain size.Otherwise,the liquid tends to form a band if shear force dominates.Moreover,the average density gradient is used as a physical criterion to distinguish the spinodal decomposition and domain growth.Both spatial and temporal changes of density are studied during the phase separation under shear. 展开更多
关键词 phase separation multiphase flow shear flow lattice boltzmann method
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基于相场模型的三相Rayleigh-Taylor不稳定性的格子Boltzmann方法模拟
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作者 杨旭光 王欣 袁晓垒 《物理学报》 北大核心 2026年第1期443-458,共16页
基于具有守恒性与相容性的N相相场模型,发展了一种用于高效模拟N相非混溶不可压流体流动的正则化格子Boltzmann方法.通过设计辅助矩,该方法能够精确恢复二阶Allen-Cahn方程与修正的动量方程.通过数值模拟三相液滴透镜铺展与三相Kelvin-H... 基于具有守恒性与相容性的N相相场模型,发展了一种用于高效模拟N相非混溶不可压流体流动的正则化格子Boltzmann方法.通过设计辅助矩,该方法能够精确恢复二阶Allen-Cahn方程与修正的动量方程.通过数值模拟三相液滴透镜铺展与三相Kelvin-Helmholtz不稳定性现象,验证了所发展的N相正则化格子Boltzmann方法的正确性与有效性.最后,对三相Rayleigh-Taylor不稳定性进行了数值模拟与分析,重点探究了雷诺数在500≤Re≤20000范围内(特别是高雷诺数Re=20000工况下)相界面的演化过程,定量分析了两个界面处气泡与尖钉的振幅以及无量纲化速度的变化规律. 展开更多
关键词 相场模型 N相不可压流体 格子boltzmann方法 RAYLEIGH-TAYLOR不稳定性
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Investigating the effect of relaxation time on Richtmyer–Meshkov instability under reshock impact:a two-component discrete Boltzmann method study
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作者 Lingyan Lian Chuandong Lin +1 位作者 Demei Li Huilin Lai 《Communications in Theoretical Physics》 2025年第8期180-195,共16页
The Richtmyer–Meshkov(RM)instability plays an important role in various natural and engineering fields such as inertial confinement fusion.In this study,the effect of relaxation time on the RM instability under resho... The Richtmyer–Meshkov(RM)instability plays an important role in various natural and engineering fields such as inertial confinement fusion.In this study,the effect of relaxation time on the RM instability under reshock impact is investigated using a two-component discrete Boltzmann method.The hydrodynamic and thermodynamic characteristics of the fluid system are comprehensively analyzed from the perspectives of the density gradient,vorticity,kinetic energy,mixing degree,mixing width and non-equilibrium intensity.Simulation results indicate that for longer relaxation time,the diffusion and dissipation are enhanced,the physical gradients decrease,and the growth of the interface is suppressed.Furthermore,the non-equilibrium manifestations show complex patterns,driven by the competitive physical mechanisms of the diffusion,dissipation,shock wave,rarefaction wave,transverse wave and fluid instabilities.These findings provide valuable insight into the fundamental mechanism of compressible fluid flows. 展开更多
关键词 Richtmyer–-Meshkov instability discrete boltzmann method compressible fluid non-equilibrium effect
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Improved physics-informed neural networks incorporating lattice Boltzmann method optimized by tanh robust weight initialization
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作者 Chenghui Yang Minglei Shan +4 位作者 Mengyu Feng Ling Kuai Yu Yang Cheng Yin Qingbang Han 《Chinese Physics B》 2025年第11期119-129,共11页
Physics-informed neural networks(PINNs)have shown considerable promise for performing numerical simulations in fluid mechanics.They provide mesh-free,end-to-end approaches by embedding physical laws into their loss fu... Physics-informed neural networks(PINNs)have shown considerable promise for performing numerical simulations in fluid mechanics.They provide mesh-free,end-to-end approaches by embedding physical laws into their loss functions.However,when addressing complex flow problems,PINNs still face some challenges such as activation saturation and vanishing gradients in deep network training,leading to slow convergence and insufficient prediction accuracy.We present physics-informed neural networks incorporating lattice Boltzmann method optimized by tanh robust weight initialization(T-PINN-LBM)to address these challenges.This approach fuses the mesoscopic lattice Boltzmann model with the automatic differentiation framework of PINNs.It also implements a tanh robust weight initialization method derived from fixed point analysis.This model effectively mitigates activation and gradient decay in deep networks,improving convergence speed and data efficiency in multiscale flow simulations.We validate the effectiveness of the model on the classical arithmetic example of lid-driven cavity flow.Compared to the traditional Xavier initialized PINN and PINN-LBM,T-PINNLBM reduces the mean absolute error(MAE)by one order of magnitude at the same network depth and maintains stable convergence in deeper networks.The results demonstrate that this model can accurately capture complex flow structures without prior data,providing a new feasible pathway for data-free driven fluid simulation. 展开更多
关键词 lattice boltzmann method physical-informed neural networks fluid mechanics tanh robust weight initialization
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A combined method using Lattice Boltzmann Method(LBM)and Finite Volume Method(FVM)to simulate geothermal reservoirs in Enhanced Geothermal System(EGS)
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作者 Xiang Gao Tai-lu Li +2 位作者 Yu-wen Qiao Yao Zhang Ze-yu Wang 《Journal of Groundwater Science and Engineering》 2024年第2期132-146,共15页
With the development of industrial activities,global warming has accelerated due to excessive emission of CO_(2).Enhanced Geothermal System(EGS)utilizes deep geothermal heat for power generation.Although porous medium... With the development of industrial activities,global warming has accelerated due to excessive emission of CO_(2).Enhanced Geothermal System(EGS)utilizes deep geothermal heat for power generation.Although porous medium theory is commonly employed to model geothermal reservoirs in EGS,Hot Dry Rock(HDR)presents a challenge as it consists of impermeable granite with zero porosity,potentially distorting the physical interpretation.To address this,the Lattice Boltzmann Method(LBM)is employed to simulate CO_(2)flow within geothermal reservoirs and the Finite Volume Method(FVM)to solve the energy conservation equation for temperature distribution.This combined method of LBM and FVM is imple-mented using MATLAB.The results showed that the Reynolds numbers(Re)of 3,000 and 8,000 lead to higher heat extraction rates from geothermal reservoirs.However,higher Re values may accelerate thermal breakthrough,posing challenges to EGS operation.Meanwhile,non-equilibrium of density in fractures becomes more pronounced during the system's life cycle,with non-Darcy's law becoming significant at Re values of 3,000 and 8,000.Density stratification due to buoyancy effects significantly impacts temperature distribution within geothermal reservoirs,with buoyancy effects at Re=100 under gravitational influence being noteworthy.Larger Re values(3,000 and 8,000)induce stronger forced convection,leading to more uniform density distribution.The addition of proppant negatively affects heat transfer performance in geothermal reservoirs,especially in single fractures.Practical engineering considerations should determine the quantity of proppant through detailed numerical simulations. 展开更多
关键词 Lattice boltzmann method Finite volume method Enhanced geothermal system Geothermal reservoir PROPPANT Re Heat extraction rate
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FLOW FIELD ANALYSES OF PLANE JET AT LOW REYNOLDS NUMBERS USING LATTICE BOLTZMANN METHOD 被引量:5
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作者 赵立清 孙建红 许常悦 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2012年第3期199-206,共8页
A two-dimensional(2-D) incompressible plane jet is investigated using the lattice Boltzmann method(LBM) for low Reynolds numbers of 42 and 65 based on the jet-exit-width and the maximum jet-exit-velocity. The resu... A two-dimensional(2-D) incompressible plane jet is investigated using the lattice Boltzmann method(LBM) for low Reynolds numbers of 42 and 65 based on the jet-exit-width and the maximum jet-exit-velocity. The results show that the mean centerline velocity decays as x-1/3 and the jet spreads as x2/3 in the self-similar region, which are consistent with the theoretical predictions and the experimental data. The time histories and PSD analyses of the instantaneous centerline velocities indicate the periodic behavior and the interaction between periodic components of velocities should not be neglected in the far field region, although it is invisible in the near field region. 展开更多
关键词 plane jet low Reynolds number lattice boltzmann method
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NOVEL IMMERSED BOUNDARY-LATTICE BOLTZMANN METHOD BASED ON FEEDBACK LAW 被引量:1
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作者 李秀娟 赵荣国 钟诚文 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2012年第2期179-186,共8页
The lattice Boltzmann method (LBM) and the immersed boundary method (IBM) are alternative, com- putational techniques for solving complex fluid dynamics systems, and can take the place of the Navier-Stokes(N- S)... The lattice Boltzmann method (LBM) and the immersed boundary method (IBM) are alternative, com- putational techniques for solving complex fluid dynamics systems, and can take the place of the Navier-Stokes(N- S) equation. This paper proposes a novel immersed boundary-lattice Boltzmann method (IB-LBM) based on the feedback law. The method uses the immersed boundary concept in the LBM framework to capture the coupling between a body with complex geometry and a uniform fluid, Then, the flows around a stationary circular cylinder and two circular cylinders in a side by side arrangement are simulated by using the method. Results are agreed well with the benchmark data, so, the capability of the method for complex geometry is demonstrated. Different from the conventional IB-LBM, which uses the Hook's law or the direct forcing method to compute the interae- tion force, the method uses the feedback law--the feedback of velocity field and displacement information to calculate the force, thus ensuring the method has advantages of easy implementation and full parallelism. 展开更多
关键词 computational fluid dynamics lattice boltzmann method immersed boundary method feedback law circular cylinder
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COMPRESSIBLE FLOW SIMULATION AROUND AIRFOIL BASED ON LATTICE BOLTZMANN METHOD
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作者 钟诚文 李凯 +2 位作者 孙建红 卓从山 解建飞 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2009年第3期206-211,共6页
The flow around airfoil NACA0012 enwrapped by the body-fitted grid is simulated by a coupled doubledistribution-function (DDF) lattice Boltzmann method (LBM) for the compressible Navier-Stokes equations. Firstly, ... The flow around airfoil NACA0012 enwrapped by the body-fitted grid is simulated by a coupled doubledistribution-function (DDF) lattice Boltzmann method (LBM) for the compressible Navier-Stokes equations. Firstly, the method is tested by simulating the low Reynolds number flow at Ma =0. 5,a=0. 0, Re=5 000. Then the simulation of flow around the airfoil is carried out at Ma:0. 5, 0. 85, 1.2; a=-0.05, 1.0, 0.0, respectively. And a better result is obtained by using a local refined grid. It reduces the error produced by the grid at Ma=0. 85. Though the inviscid boundary condition is used to avoid the problem of flow transition to turbulence at high Reynolds numbers, the pressure distribution obtained by the simulation agrees well with that of the experimental results. Thus, it proves the reliability of the method and shows its potential for the compressible flow simulation. The suecessful application to the flow around airfoil lays a foundation of the numerical simulation of turbulence. 展开更多
关键词 compressible flow computational fluid dynamics lattice boltzmann method AIRFOIL body-fitted grid
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基于格子Boltzmann法的柱群布置对污染物分布影响研究 被引量:1
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作者 夏鹏飞 杜海川 +1 位作者 杜璇 曹德生 《水资源与水工程学报》 北大核心 2025年第2期118-124,133,共8页
在河流、渠道和湖泊等浅水流环境中,污染物的输运现象广泛存在。为了保护水生态环境,研究污染物在这些环境中的分布规律具有重要意义。采用基于D2Q16模型的格子Boltzmann方法(LBM)模拟浅水流动,并利用D2Q5模型对污染物扩散过程进行模拟... 在河流、渠道和湖泊等浅水流环境中,污染物的输运现象广泛存在。为了保护水生态环境,研究污染物在这些环境中的分布规律具有重要意义。采用基于D2Q16模型的格子Boltzmann方法(LBM)模拟浅水流动,并利用D2Q5模型对污染物扩散过程进行模拟,探讨了圆柱群不同间距比、不同布置形式以及水流流速对柱后污染物分布的影响。结果表明:圆柱间距比对于柱后污染物浓度分布的影响较大,当进口流速一定时,随着圆柱间距比的增大,柱后各横断面的污染物分布更加集中,当圆柱间距比L/D为1.0时,各横断面的污染物浓度极值均大于其他圆柱间距比下的污染物浓度极值;当圆柱间距比一定时,随着进口流速的增大,柱后各断面污染物浓度的极值总体上呈现不断下降的趋势;柱群布置形式对于柱后污染物的分布影响较大,正方形布置形式相比于梅花形、梯形和菱形柱后同位置横断面的污染物浓度更小。 展开更多
关键词 污染物分布 污染物浓度 柱群 格子boltzmann 浅水方程 数值模拟
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基于OCT图像三维重建的人眼房水动力学LBM模拟
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作者 陈建国 梁恩华 +1 位作者 宋学伟 覃章荣 《广西师范大学学报(自然科学版)》 北大核心 2025年第6期29-41,共13页
人眼中流动的房水是维持日常生理活动的关键,系统研究人眼房水动力学行为对理解眼病的发病机制及提高治疗效果等具有十分重要的现实意义。为了研究真实人眼中组织的个性化几何特征对房水动力学的影响,本文基于光学相干断层扫描技术与格... 人眼中流动的房水是维持日常生理活动的关键,系统研究人眼房水动力学行为对理解眼病的发病机制及提高治疗效果等具有十分重要的现实意义。为了研究真实人眼中组织的个性化几何特征对房水动力学的影响,本文基于光学相干断层扫描技术与格子Boltzmann方法(lattice Boltzmann method,LBM)对真实人眼组织进行三维几何重建以及数值模拟,并获得一些有意义的结果。前房角大小与房水的流动模式具有密切的关系,前房角的减小会导致其流动模式改变以及流动速度的下降。当前房角从41°减小到9°后,房水的最大流速从9.65×10^(-5)m/s降低到3.10×10^(-5)m/s。角膜凹陷不会改变房水的流动模式,但是会降低房水流动速度。凹陷距离从0 mm增加到0.7 mm时,房水最大流速从5.93×10^(-5)m/s降低到1.45×10^(-5)m/s。瞳孔异位会导致房水流动在前房腔内的不对称分布,伴随前房角的减小,房水的流动模式会变得更加复杂。 展开更多
关键词 格子boltzmann方法 房水动力学 三维重建 数值模拟 眼前节
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On the interaction between bubbles and the free surface with high density ratio 3D lattice Boltzmann method 被引量:6
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作者 Guo-Qing Chen A-Man Zhang Xiao Huang 《Theoretical & Applied Mechanics Letters》 CAS CSCD 2018年第4期252-256,299,共6页
The bubbles rise up and burst at the free surface is a complex two-phase process.A free energy lattice Boltzmann method(LBM)model is adopted in this paper to study this phenomenon.The interface capturing technique[Zhe... The bubbles rise up and burst at the free surface is a complex two-phase process.A free energy lattice Boltzmann method(LBM)model is adopted in this paper to study this phenomenon.The interface capturing technique[Zheng et al.,2006]is used to deal with the high density ratio problem.The Laplace law and the air-water interface capturing ability are validated for the multiphase model.The interaction between the single bubble or multiple bubbles and the free surface are studied by the multiphase model.The force acting on the bubble and the evolution of the free surface is studied.Meanwhile,effect of the initial distance between two adjacent bubbles on interaction effects of multiple bubbles is investigated as well. 展开更多
关键词 LATTICE boltzmann method Free energy model High density RATIO Multiple BUBBLES
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Lattice Boltzmann method for simulation of time-dependent neutral particle transport 被引量:3
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作者 Ya-Hui Wang Li-Ming Yan +1 位作者 Bang-Yang Xia Yu Ma 《Nuclear Science and Techniques》 SCIE CAS CSCD 2017年第3期74-84,共11页
In this paper, a novel model is proposed to investigate the neutron transport in scattering and absorbing medium. This solution to the linear Boltzmann equation is expanded from the idea of lattice Boltzmann method(LB... In this paper, a novel model is proposed to investigate the neutron transport in scattering and absorbing medium. This solution to the linear Boltzmann equation is expanded from the idea of lattice Boltzmann method(LBM) with the collision and streaming process. The theoretical derivation of lattice Boltzmann model for transient neutron transport problem is proposed for the first time.The fully implicit backward difference scheme is used to ensure the numerical stability, and relaxation time and equilibrium particle distribution function are obtained. To validate the new lattice Boltzmann model, the LBM formulation is tested for a homogenous media with different sources, and both transient and steady-state LBM results get a good agreement with the benchmark solutions. 展开更多
关键词 Transient NEUTRON transport LATTICE boltzmann method Linear boltzmann equation
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Simulating high Reynolds number flow in two-dimensional lid-driven cavity by multi-relaxation-time lattice Boltzmann method 被引量:5
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作者 柴振华 施保昌 郑林 《Chinese Physics B》 SCIE EI CAS CSCD 2006年第8期1855-1863,共9页
By coupling the non-equilibrium extrapolation scheme for boundary condition with the multi-relaxation-time lattice Boltzmann method, this paper finds that the stability of the multi-relaxation-time model can be improv... By coupling the non-equilibrium extrapolation scheme for boundary condition with the multi-relaxation-time lattice Boltzmann method, this paper finds that the stability of the multi-relaxation-time model can be improved greatly, especially on simulating high Reynolds number (Re) flow. As a discovery, the super-stability analysed by Lallemand and Luo is verified and the complex structure of the cavity flow is also exhibited in our numerical simulation when Re is high enough. To the best knowledge of the authors, the maximum of Re which has been investigated by direct numerical simulation is only around 50 000 in the literature; however, this paper can readily extend the maximum to 1000 000 with the above combination. 展开更多
关键词 multi-relaxation-time lattice boltzmann method non-equilibrium extrapolation scheme high Reynolds number lid-driven cavity flow
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Numerical modeling of condensate droplet on superhydrophobic nanoarrays using the lattice Boltzmann method 被引量:2
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作者 张庆宇 孙东科 +1 位作者 张友法 朱鸣芳 《Chinese Physics B》 SCIE EI CAS CSCD 2016年第6期349-354,共6页
In the present study,the process of droplet condensation on superhydrophobic nanoarrays is simulated using a multicomponent multi-phase lattice Boltzmann model.The results indicate that three typical nucleation modes ... In the present study,the process of droplet condensation on superhydrophobic nanoarrays is simulated using a multicomponent multi-phase lattice Boltzmann model.The results indicate that three typical nucleation modes of condensate droplets are produced by changing the geometrical parameters of nanoarrays.Droplets nucleated at the top(top-nucleation mode),or in the upside interpillar space of nanoarrays(side-nucleation mode),generate the non-wetting Cassie state,whereas the ones nucleated at the bottom corners between the nanoarrays(bottom-nucleation mode) present the wetting Wenzel state.Time evolutions of droplet pressures at the upside and downside of the liquid phase are analyzed to understand the wetting behaviors of the droplets condensed from different nucleation modes.The phenomena of droplet condensation on nanoarrays patterned with different hydrophilic and hydrophobic regions are simulated,indicating that the nucleation mode of condensate droplets can also be manipulated by modifying the local intrinsic wettability of nanoarray surface.The simulation results are compared well with the experimental observations reported in the literature. 展开更多
关键词 condensate droplet superhydrophobic nanoarray WETTABILITY lattice boltzmann method
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A study of the upper limit of solid scatters density for gray Lattice Boltzmann Method 被引量:2
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作者 Yongli Chen Keqin Zhu 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2008年第5期515-522,共8页
The upper limit of the solid scatters density ns (x), a key parameter for the simulation of flows in porous media with a gray Lattice Boltzmann Method, is studied by an analytical way for the infiltration Poiseuille... The upper limit of the solid scatters density ns (x), a key parameter for the simulation of flows in porous media with a gray Lattice Boltzmann Method, is studied by an analytical way for the infiltration Poiseuille flow between two infinite parallel plates. Analyses of three different gray Lattice Boltzmann schemes, separately proposed by Gao and Sharma et al., Dardis and McCloskey, and Thorne and Sukop, indicate that the effective domain of Gao and Sharma's scheme is restricted to ns 〈 1/2√3≈0.289, Dardis and McCloskey's scheme is restricted to ns 〈 (√57-1)/28≈0.234, and that there is no extra restriction on ns(x) with Thorne and Sukop's scheme. These results are obtained for the dimensionless relaxation time τ= 1. The above analytical results are verified by our numerical simulations. The use of a gray LBM is further illustrated by simulating the flow at the interface of a porous medium. Simulation results yield velocity profiles which agree very well with Brinkman's prediction. 展开更多
关键词 Gray Lattice boltzmann method Infiltration flow Scattering density Porous media
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Simulation of high velocity compaction of powder in a two dimension mould using lattice Boltzmann method 被引量:2
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作者 Qiaojie LI Zhoushun ZHENG Xuanhui QU 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2012年第1期47-54,共8页
This work presents a numerical study on the dynamic high velocity compaction of the metal powder. The analysis of the process is based on a mesoscopic approach using multi-speed lattice Boltzmann method. The boundary ... This work presents a numerical study on the dynamic high velocity compaction of the metal powder. The analysis of the process is based on a mesoscopic approach using multi-speed lattice Boltzmann method. The boundary condition and the relaxation time are tailored to the situation. The dynamic compaction process is vividly presented and the shock wave can be easily found in the simulation. The density is analyzed in order to explore the mechanism of the high velocity compaction. 展开更多
关键词 High velocity compaction Lattice boltzmann method SHOCKWAVE Relaxation time function
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Three-dimensional lattice Boltzmann method for simulating blood flow in aortic arch 被引量:2
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作者 康秀英 吉驭嫔 +1 位作者 刘大禾 金永娟 《Chinese Physics B》 SCIE EI CAS CSCD 2008年第3期1041-1049,共9页
The three-dimensional (3D) lattice Boltzmann models, 3DQ15, 3DQ19 and 3DQ27, under different wall boundary conditions and lattice resolutions have been investigated by simulating Poiseuille flow in a circular cylind... The three-dimensional (3D) lattice Boltzmann models, 3DQ15, 3DQ19 and 3DQ27, under different wall boundary conditions and lattice resolutions have been investigated by simulating Poiseuille flow in a circular cylinder for a wide range of Reynolds numbers. The 3DQ19 model with improved Fillippova and Hanel (FH) curved boundary condition represents a good compromise between computational efficiency and reliability. Blood flow in an aortic arch is then simulated as a typical haemodynamic application. Axial and secondary fluid velocity and effective wall shear stress profiles in a 180° bend are obtained, and the results also demonstrate that the lattice Boltzmann method is suitable for simulating the flow in 3D large-curved vessels. 展开更多
关键词 lattice boltzmann method aortic arch secondary flow wall shear stress
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