Essentially Entropic Lattice Boltzmann Model

被引:41
|
作者
Atif, Mohammad [1 ]
Kolluru, Praveen Kumar [1 ]
Thantanapally, Chakradhar [2 ]
Ansumali, Santosh [1 ,2 ]
机构
[1] Jawaharlal Nehru Ctr Adv Sci Res, Engn Mech Unit, Bangalore 560064, Karnataka, India
[2] SankhyaSutra Labs Private Ltd, Bangalore 560064, Karnataka, India
关键词
NAVIER-STOKES EQUATION; H-THEOREM; GAS AUTOMATA; HYDRODYNAMICS; DYNAMICS; FLOWS;
D O I
10.1103/PhysRevLett.119.240602
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
The entropic lattice Boltzmann model (ELBM), a discrete space-time kinetic theory for hydrodynamics, ensures nonlinear stability via the discrete time version of the second law of thermodynamics (the H theorem). Compliance with the H theorem is numerically enforced in this methodology and involves a search for the maximal discrete path length corresponding to the zero dissipation state by iteratively solving a nonlinear equation. We demonstrate that an exact solution for the path length can be obtained by assuming a natural criterion of negative entropy change, thereby reducing the problem to solving an inequality. This inequality is solved by creating a new framework for construction of Pade approximants via quadrature on appropriate convex function. This exact solution also resolves the issue of indeterminacy in case of nonexistence of the entropic involution step. Since our formulation is devoid of complex mathematical library functions, the computational cost is drastically reduced. To illustrate this, we have simulated a model setup of flow over the NACA-0012 airfoil at a Reynolds number of 2.88 x 10(6).
引用
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页数:5
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