Congshan Zhuo
Orcid: 0000-0002-0061-0365Affiliations:
- Northwestern Polytechnical University, Xian, Shaanxi, China
According to our database1,
Congshan Zhuo
authored at least 18 papers
between 2012 and 2025.
Collaborative distances:
Collaborative distances:
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Bibliography
2025
Implicit unified gas-kinetic scheme for steady state solution of hypersonic thermodynamic non-equilibrium flows.
Commun. Nonlinear Sci. Numer. Simul., 2025
2024
Comput. Phys. Commun., 2024
Multiple solutions of nonlinear coupled constitutive relation model and its rectification in non-equilibrium flow computation.
Comput. Math. Appl., 2024
2023
Unified gas-kinetic scheme with simplified multi-scale numerical flux for thermodynamic non-equilibrium flow in all flow regimes.
Commun. Nonlinear Sci. Numer. Simul., May, 2023
J. Comput. Phys., February, 2023
An efficient high-order gas-kinetic scheme with hybrid WENO-AO method for the Euler and Navier-Stokes solutions.
CoRR, 2023
2022
Entropy, 2022
Unified X-space parallelization algorithm for conserved discrete unified gas kinetic scheme.
Comput. Phys. Commun., 2022
Investigation of nonlinear squeeze-film damping involving rarefied gas effect in micro-electro-mechanical systems.
Comput. Math. Appl., 2022
2020
A simplified finite volume lattice Boltzmann method for simulations of fluid flows from laminar to turbulent regime, Part II: Extension towards turbulent flow simulation.
Comput. Math. Appl., 2020
A simplified finite volume lattice Boltzmann method for simulations of fluid flows from laminar to turbulent regime, Part I: Numerical framework and its application to laminar flow simulation.
Comput. Math. Appl., 2020
2019
Comput. Phys. Commun., 2019
Comput. Math. Appl., 2019
2018
Comput. Math. Appl., 2018
2013
Filter-matrix lattice Boltzmann simulation of lid-driven deep-cavity flows, Part II - Flow bifurcation.
Comput. Math. Appl., 2013
Filter-matrix lattice Boltzmann simulation of lid-driven deep-cavity flows, Part I - Steady flows.
Comput. Math. Appl., 2013
2012
Non-body-fitted Cartesian-mesh simulation of highly turbulent flows using multi-relaxation-time lattice Boltzmann method.
Comput. Math. Appl., 2012