A model for hybrid simulations of molecular dynamics and computational fluid dynamics
スポンサーリンク
概要
- 論文の詳細を見る
We develop a method for multiscale hybrid simulations of molecular dynamics (MD) and computational fluid dynamics (CFD). In this method, the usual lattice-mesh based simulations are applied for the CFD level, but each lattice is associated with a small MD cell that generates a “local stress” according to a “local flow field” given from CFD instead of using any constitutive functions at the CFD level. We carried out hybrid simulations for some elemental flow problems involving simple Lennard-Jones liquids and compared the results with those obtained by usual CFD with a Newtonian constitutive relation in order to examine the validity of our hybrid simulation method. It is demonstrated that our hybrid simulations successfully reproduce the correct flow behavior obtained from usual CFD as long as the mesh size Deltax and the time step Deltat of CFD are not too large compared to the system size lMD and the sampling duration tMD of MD simulations performed at each time step of the CFD. Otherwise, the simulations are affected by large fluctuations due to poor statistical averages taken in the MD part. Properties of the fluctuations are analyzed in detail.
論文 | ランダム
- 尿崩症の治療 (実地医家に必要な内分泌疾患診療の知識(特集))
- 絵画製作における素材と表現について (研究発表 : 第一日) (日本保育学会第十一回大会特集号)
- 19.XTV自動制御装置における撮影条件設定法(九州部会(第27回))
- 中ソ関係の現段階 (中国はどこへ)
- 海外情報 ドイツにおける企業の「組織学習」--「共通言語」としての「経営品質」