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Original Articles

Advanced lattice Boltzmann scheme for high-Reynolds-number magneto-hydrodynamic flows

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Pages 446-462 | Received 15 May 2017, Accepted 01 Apr 2018, Published online: 27 Apr 2018

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Chang-ming Hu, Jian-xia Guo & Zhi-yu Wang. (2022) Lattice Boltzmann simulation for grout filling process during simultaneous backfill grouting of shield in tunnel construction. European Journal of Environmental and Civil Engineering 26:9, pages 4039-4054.
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Articles from other publishers (9)

H.S. Tavares, B. Magacho, L. Moriconi & J.B.R. Loureiro. (2023) A simplified lattice Boltzmann implementation of the quasi-static approximation in pipe flows under the presence of non-uniform magnetic fields. Computers & Mathematics with Applications 148, pages 93-112.
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Raffaello Foldes, Emmanuel Lévêque, Raffaele Marino, Ermanno Pietropaolo, Alessandro De Rosis, Daniele Telloni & Fabio Feraco. (2023) Efficient kinetic Lattice Boltzmann simulation of three-dimensional Hall-MHD turbulence. Journal of Plasma Physics 89:4.
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Alessandro De Rosis, Ruizhi Liu & Alistair Revell. (2021) One-stage simplified lattice Boltzmann method for two- and three-dimensional magnetohydrodynamic flows. Physics of Fluids 33:8.
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Alessandro De Rosis & Enatri Enan. (2021) A three-dimensional phase-field lattice Boltzmann method for incompressible two-components flows. Physics of Fluids 33:4.
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Alessandro De Rosis, Joanne Al-Adham, Hamda Al-Ali & Ran Meng. (2021) Double-D2Q9 lattice Boltzmann models with extended equilibrium for two-dimensional magnetohydrodynamic flows. Physics of Fluids 33:3.
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Alessandro De Rosis & Christophe Coreixas. (2020) Multiphysics flow simulations using D3Q19 lattice Boltzmann methods based on central moments. Physics of Fluids 32:11.
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Alessandro De Rosis, Rongzong Huang & Christophe Coreixas. (2019) Universal formulation of central-moments-based lattice Boltzmann method with external forcing for the simulation of multiphysics phenomena. Physics of Fluids 31:11.
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Christophe Coreixas, Bastien Chopard & Jonas Latt. (2019) Comprehensive comparison of collision models in the lattice Boltzmann framework: Theoretical investigations. Physical Review E 100:3.
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Alessandro De Rosis & Kai H. Luo. (2019) Role of higher-order Hermite polynomials in the central-moments-based lattice Boltzmann framework. Physical Review E 99:1.
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