Nonorthogonal central-moments-based lattice Boltzmann scheme in three dimensions A De Rosis Physical Review E 95 (1), 013310, 2017 | 80 | 2017 |
A comparison between the interpolated bounce-back scheme and the immersed boundary method to treat solid boundary conditions for laminar flows in the lattice Boltzmann framework A De Rosis, S Ubertini, F Ubertini Journal of Scientific Computing 61, 477-489, 2014 | 79 | 2014 |
Hydroelastic analysis of hull slamming coupling lattice Boltzmann and finite element methods A De Rosis, G Falcucci, M Porfiri, F Ubertini, S Ubertini Computers & Structures 138, 24-35, 2014 | 67 | 2014 |
Aeroelastic study of flexible flapping wings by a coupled lattice Boltzmann-finite element approach with immersed boundary method A De Rosis, G Falcucci, S Ubertini, F Ubertini Journal of Fluids and Structures 49, 516-533, 2014 | 65 | 2014 |
A partitioned approach for two-dimensional fluid–structure interaction problems by a coupled lattice Boltzmann-finite element method with immersed boundary A De Rosis, S Ubertini, F Ubertini Journal of Fluids and Structures 45, 202-215, 2014 | 61 | 2014 |
A coupled lattice Boltzmann-finite element approach for two-dimensional fluid–structure interaction A De Rosis, G Falcucci, S Ubertini, F Ubertini Computers & Fluids 86, 558-568, 2013 | 59 | 2013 |
Non-orthogonal central moments relaxing to a discrete equilibrium: A D2Q9 lattice Boltzmann model A De Rosis Europhysics Letters 116 (4), 44003, 2017 | 56 | 2017 |
Lattice Boltzmann analysis of fluid-structure interaction with moving boundaries A De Rosis, G Falcucci, S Ubertini, F Ubertini, S Succi Communications in computational physics 13 (3), 823-834, 2013 | 56 | 2013 |
Universal formulation of central-moments-based lattice Boltzmann method with external forcing for the simulation of multiphysics phenomena A De Rosis, R Huang, C Coreixas Physics of Fluids 31 (11), 2019 | 52 | 2019 |
Multiphysics flow simulations using D3Q19 lattice Boltzmann methods based on central moments A De Rosis, C Coreixas Physics of Fluids 32 (11), 2020 | 48 | 2020 |
Lattice Boltzmann modeling and simulation of forced-convection boiling on a cylinder S Saito, A De Rosis, L Fei, KH Luo, K Ebihara, A Kaneko, Y Abe Physics of Fluids 33 (2), 2021 | 46 | 2021 |
Role of higher-order Hermite polynomials in the central-moments-based lattice Boltzmann framework A De Rosis, KH Luo Physical Review E 99 (1), 013301, 2019 | 43 | 2019 |
A central moments-based lattice Boltzmann scheme for shallow water equations A De Rosis Computer Methods in Applied Mechanics and Engineering 319, 379-392, 2017 | 41 | 2017 |
Color-gradient lattice Boltzmann model with nonorthogonal central moments: Hydrodynamic melt-jet breakup simulations S Saito, A De Rosis, A Festuccia, A Kaneko, Y Abe, K Koyama Physical Review E 98 (1), 013305, 2018 | 40 | 2018 |
Central-moment lattice Boltzmann schemes with fixed and moving immersed boundaries A De Rosis, E Lévêque Computers & Mathematics with Applications 72 (6), 1616-1628, 2016 | 33 | 2016 |
Alternative formulation to incorporate forcing terms in a lattice Boltzmann scheme with central moments A De Rosis Physical Review E 95 (2), 023311, 2017 | 30 | 2017 |
A three-dimensional phase-field lattice Boltzmann method for incompressible two-components flows A De Rosis, E Enan Physics of Fluids 33 (4), 2021 | 26 | 2021 |
A lattice Boltzmann model for multiphase flows interacting with deformable bodies A De Rosis Advances in water resources 73, 55-64, 2014 | 23 | 2014 |
Harmonic oscillations of laminae in non-Newtonian fluids: a lattice Boltzmann-immersed boundary approach A De Rosis Advances in Water Resources 73, 97-107, 2014 | 22 | 2014 |
Central-moments–based lattice Boltzmann schemes with force-enriched equilibria A De Rosis Europhysics Letters 117 (3), 34003, 2017 | 21 | 2017 |