Incompressible flow simulations governed by the two-dimensional Navier-Stokes model are presented in this work. This set of nonlinear equations is approximated by the lat...Show More
Metadata
Abstract:
Incompressible flow simulations governed by the two-dimensional Navier-Stokes model are presented in this work. This set of nonlinear equations is approximated by the lattice Boltzmann method (LBM). Numerical method is developed and implemented in both sequential and CUDA programs. The accuracy of numerical scheme is investigated by simulating two-dimensional duct flows that analytical solution exists. CUDA is used to improve computational performance. Speed up is increased approximately 10x from a sequential program.
Navier-Stokes equations are the set of nonlinear partial differential equations which can be employed to describe fluid motion. It is based on the conservation of mass, and conservation of momentum under Newton's second law.
Usage
Select a Year
2024
View as
Total usage sinceFeb 2015:180
Year Total:17
Data is updated monthly. Usage includes PDF downloads and HTML views.