Discrete-velocity models and numerical schemes for the Boltzmann-BGK equation in plane and axisymmetric geometries L Mieussens Journal of Computational Physics 162 (2), 429-466, 2000 | 431 | 2000 |

Discrete velocity model and implicit scheme for the BGK equation of rarefied gas dynamics L Mieussens Mathematical Models and Methods in Applied Sciences 10 (08), 1121-1149, 2000 | 289 | 2000 |

A new asymptotic preserving scheme based on micro-macro formulation for linear kinetic equations in the diffusion limit M Lemou, L Mieussens SIAM Journal on Scientific Computing 31 (1), 334-368, 2008 | 256 | 2008 |

Uniformly stable numerical schemes for the Boltzmann equation preserving the compressible Navier–Stokes asymptotics M Bennoune, M Lemou, L Mieussens Journal of Computational Physics 227 (8), 3781-3803, 2008 | 196 | 2008 |

Numerical comparison of Bhatnagar–Gross–Krook models with proper Prandtl number L Mieussens, H Struchtrup Physics of Fluids 16 (8), 2797-2813, 2004 | 136 | 2004 |

A smooth transition model between kinetic and hydrodynamic equations P Degond, S Jin, L Mieussens Journal of Computational Physics 209 (2), 665-694, 2005 | 104 | 2005 |

On the asymptotic preserving property of the unified gas kinetic scheme for the diffusion limit of linear kinetic models L Mieussens Journal of Computational Physics 253, 138-156, 2013 | 100 | 2013 |

Locally refined discrete velocity grids for stationary rarefied flow simulations C Baranger, J Claudel, N Hérouard, L Mieussens Journal of Computational Physics 257, 572-593, 2014 | 91 | 2014 |

A multiscale kinetic–fluid solver with dynamic localization of kinetic effects P Degond, G Dimarco, L Mieussens Journal of Computational Physics 229 (13), 4907-4933, 2010 | 83 | 2010 |

A Fokker–Planck model of the Boltzmann equation with correct Prandtl number J Mathiaud, L Mieussens Journal of Statistical Physics 162, 397-414, 2016 | 79 | 2016 |

Analysis of an asymptotic preserving scheme for linear kinetic equations in the diffusion limit JG Liu, L Mieussens SIAM Journal on Numerical Analysis 48 (4), 1474-1491, 2010 | 72 | 2010 |

Macroscopic fluid models with localized kinetic upscaling effects P Degond, JG Liu, L Mieussens Multiscale Modeling & Simulation 5 (3), 940-979, 2006 | 67 | 2006 |

Numerical simulations of rarefied gases in curved channels: Thermal creep, circulating flow, and pumping effect K Aoki, P Degond, L Mieussens Communications in Computational Physics 6 (5), 919, 2009 | 61 | 2009 |

A moving interface method for dynamic kinetic–fluid coupling P Degond, G Dimarco, L Mieussens Journal of Computational Physics 227 (2), 1176-1208, 2007 | 57 | 2007 |

A survey of deterministic solvers for rarefied flows L Mieussens AIP Conference Proceedings 1628 (1), 943-951, 2014 | 56 | 2014 |

A BGK model for high temperature rarefied gas flows C Baranger, Y Dauvois, G Marois, J Mathé, J Mathiaud, L Mieussens European Journal of Mechanics-B/Fluids 80, 1-12, 2020 | 47 | 2020 |

Local discrete velocity grids for deterministic rarefied flow simulations S Brull, L Mieussens Journal of Computational Physics 266, 22-46, 2014 | 44 | 2014 |

A diffusion model for rarefied flows in curved channels K Aoki, P Degond, L Mieussens, S Takata, H Yoshida Multiscale Modeling & Simulation 6 (4), 1281-1316, 2008 | 42 | 2008 |

Slip boundary conditions for the compressible Navier–Stokes equations K Aoki, C Baranger, M Hattori, S Kosuge, G Martalò, J Mathiaud, ... Journal of Statistical Physics 169, 744-781, 2017 | 39 | 2017 |

Survey of flight and numerical data of hypersonic rarefied flows encountered in earth orbit and atmospheric reentry M Schouler, Y Prévereaud, L Mieussens Progress in Aerospace Sciences 118, 100638, 2020 | 35 | 2020 |