A dynamic mesh refinement technique for Lattice Boltzmann simulations on octree-like grids

被引:0
作者
Philipp Neumann
Tobias Neckel
机构
[1] Technische Universität München,
来源
Computational Mechanics | 2013年 / 51卷
关键词
Lattice Boltzmann; Dynamic grid refinement; Adaptive Cartesian grids; Multiscale; Fluctuations; Brownian; Particle transport;
D O I
暂无
中图分类号
学科分类号
摘要
In this contribution, we present our new adaptive Lattice Boltzmann implementation within the Peano framework, with special focus on nanoscale particle transport problems. With the continuum hypothesis not holding anymore on these small scales, new physical effects—such as Brownian fluctuations—need to be incorporated. We explain the overall layout of the application, including memory layout and access, and shortly review the adaptive algorithm. The scheme is validated by different benchmark computations in two and three dimensions. An extension to dynamically changing grids and a spatially adaptive approach to fluctuating hydrodynamics, allowing for the thermalisation of the fluid in particular regions of interest, is proposed. Both dynamic adaptivity and adaptive fluctuating hydrodynamics are validated separately in simulations of particle transport problems. The application of this scheme to an oscillating particle in a nanopore illustrates the importance of Brownian fluctuations in such setups.
引用
收藏
页码:237 / 253
页数:16
相关论文
共 129 条
[1]  
Adhikari R(2005)Fluctuating lattice Boltzmann Europhys Lett 71 473-479
[2]  
Stratford K(1954)A model for collision processes in gases. I. Small amplitude processes in charged and neutral one-component systems Phys Rev 94 511-525
[3]  
Cates ME(1958)A note on the generation of random normal deviates Ann Math Stat 29 610-611
[4]  
Wagner AJ(2008)An Eulerian approach for partitioned fluid–structure simulations on Cartesian grids Comput Mech 43 115-124
[5]  
Bhatnagar PL(2008)Numerical simulation of particle transport in a drift ratchet SIAM J Sci Comput 30 2777-2798
[6]  
Gross EP(2010)The PDE framework Peano applied to fluid dynamics: an efficient implementation of a parallel multiscale fluid dynamics solver on octree-like adaptive Cartesian grids Comput Mech 46 103-114
[7]  
Krook M(2010)Partitioned simulation of fluid–structure interaction on Cartesian grids Lect Notes Comput Sci Eng 73 255-284
[8]  
Box GEP(2011)Towards multi-phase flow simulations in the PDE framework Peano Comput Mech 48 365-376
[9]  
Muller ME(1998)Volumetric formulation of the lattice Boltzmann method for fluid dynamics: Basic concept Phys Rev E 58 3955-3963
[10]  
Brenk M(2006)Grid refinement in lattice Boltzmann methods based on volumetric formulation Physica A 362 158-167