A Hennart Nodal Method for the Diffusion Equation
P. Lesaint, Slimane Noceir, D. Verwaerde
Abstract
P. Lesaint, Slimane Noceir, D. Verwaerde
Abstract
A modification of the Hennart nodal method for neutron diffusion problems is presented. The final system of equations obtained by this method is not positive definite. However, a flux elimination technique leads to a simple positive definite system, which can be solved by the traditional iterative methods. Calculations of a two-dimensional International Atomic Energy Agency benchmark problem are performed and compared with results of the original Hennart nodal method and some finite element methods. The high computational efficiency of this modified nodal method is clearly demonstrated.
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A modification of the Hennart nodal method for neutron diffusion problems is presented. The final system of equations obtained by this method is not positive definite. However, a flux elimination technique leads to a simple positive definite system, which can be solved by the traditional iterative methods. Calculations of a two-dimensional International Atomic Energy Agency benchmark problem are performed and compared with results of the original Hennart nodal method and some finite element methods. The high computational efficiency of this modified nodal method is clearly demonstrated.
Key concepts: NODAL, Diffusion equation, Diffusion, Applied mathematics, Physics, Mathematics, Mathematical analysis, Thermodynamics