C. Shu
Results

Journal Article
Construction of Non-Equilibrium Gas Distribution Functions Through Expansions in Peculiar Velocity Space
Advances in Applied Mathematics and Mechanics, Vol. 15 (2023), Iss. 6 : pp. 1456–1472

Journal Article
A Simplified Lattice Boltzmann Method Without Evolution of Distribution Function
Advances in Applied Mathematics and Mechanics, Vol. 9 (2017), Iss. 1 : pp. 1–22

Journal Article
A Hybrid Lattice Boltzmann Flux Solver for Simulation of Viscous Compressible Flows
Advances in Applied Mathematics and Mechanics, Vol. 8 (2016), Iss. 6 : pp. 887–910

Journal Article
Development of Lattice Boltzmann Flux Solver for Simulation of Incompressible Flows
Advances in Applied Mathematics and Mechanics, Vol. 6 (2014), Iss. 4 : pp. 436–460

Journal Article
A Boundary Condition-Implemented Immersed Boundary-Lattice Boltzmann Method and Its Application for Simulation of Flows Around a Circular Cylinder
Advances in Applied Mathematics and Mechanics, Vol. 6 (2014), Iss. 6 : pp. 811–829

Journal Article
Simulation of Incompressible Viscous Flows by Local DFD-Immersed Boundary Method
Advances in Applied Mathematics and Mechanics, Vol. 4 (2012), Iss. 3 : pp. 311–324

Journal Article
Development and Comparative Studies of Three Non-Free Parameter Lattice Boltzmann Models for Simulation of Compressible Flows
Advances in Applied Mathematics and Mechanics, Vol. 4 (2012), Iss. 4 : pp. 454–472

Journal Article
Quadrilateral Cell-Based Anisotropic Adaptive Solution for the Euler Equations
Communications in Computational Physics, Vol. 9 (2011), Iss. 1 : pp. 68–88

Journal Article
Particulate Flow Simulation via a Boundary Condition-Enforced Immersed Boundary-Lattice Boltzmann Scheme
Communications in Computational Physics, Vol. 7 (2010), Iss. 4 : pp. 793–812

Journal Article
Three-Dimensional Lattice Kinetic Scheme and Its Application to Simulate Incompressible Viscous Thermal Flows
Communications in Computational Physics, Vol. 2 (2007), Iss. 2 : pp. 239–254

Journal Article
A Novel Construction of Distribution Function Through Second-Order Polynomial Approximation in Terms of Particle Mass, Momentum and Energy
Advances in Applied Mathematics and Mechanics, Vol. 16 (2024), Iss. 3 : pp. 738–770