Analysis of Tow Dimensional Steady-State Heat Conduction Problems by MLPG Method
Journal: International Journal of Advanced Design and Manufacturing Technology (Vol.4, No. 4)Publication Date: 2011-09-30
Authors : Gholam Hosein Bradaran Mohammad Javad Mahmoodabadi;
Page : 47-56
Keywords : Heat Conduction; Heaviside Step Function; Meshless Local Petrov?Galerkin; MLS;
Abstract
Numerical solutions obtained by the Meshless local Petrov?Galerkin (MLPG) method are presented for two-dimensional steady-state heat conduction problems. The MLPG method is a truly meshless approach, and neither the nodal connectivity nor the background mesh is required for solving the initial-boundary-value problem. The penalty method is adopted to efficiently enforce the essential boundary conditions, the moving least squares approximation is used for interpolation schemes and the Heaviside step function is chosen for test function. The results show that the present method is very promising in solving engineering two-dimensional steady-state heat conduction problems
Other Latest Articles
- Comparative Investigation in a Turbine Blade Passage Flows with Several Different Turbulence Models
- Investigation of Process Parameters on Hot Ring Rolling by Coupled Thermo-Mechanical 3D-FEA
- The Comparison of the Microstructure and Hardness of Al-B and Al-Mg-B Composites
- The Energy and Exergy Analysis of Single Effect Absorption Chiller
- Investigating the Effect of Different Boundary Conditions on the Identification of a Cavity Inside Solid Bodies
Last modified: 2013-03-04 17:01:49