MRT-lattice Boltzmann hybrid model for the double diffusive mixed convection with thermodiffusion effect
Author:
Publisher
Springer Science and Business Media LLC
Subject
Computer Science Applications
Link
https://link.springer.com/content/pdf/10.1007/s11047-022-09884-4.pdf
Reference34 articles.
1. All-Amiri AM, Khanafer KM, Pop I (2007) Numerical simulation of combined thermal and mass transport in a square lid-driven cavity. Int J Thermal Sci 46:622–671
2. Alleborn N, Raszillier H, Durst F (1999) Lid-Driven Cavity with Heat and Mass Transport. In J Heat Mass Transf 42:833–853
3. Bahloul A, Boutana N, Vasseur P (2003) Double-diffusive and Soret-induced convection in a shallow horizontal porous layer. J Fluid Mech 491:325–352
4. Béghein C, Haghighat F, Allard F (1992) Numerical study of double diffusive natural convection in a square cavity. Int J Heat Mass Transf 35:833–846
5. Ben Cheikh N, Beya RB (2007) Benchmark solution for time-dependent natural convection flows with an accelerated full-multigrid method. Numer Heat Transf Prat B 52:131–151
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