Article ID Journal Published Year Pages File Type
1729271 Annals of Nuclear Energy 2011 8 Pages PDF
Abstract

In this work, a solution for a two-dimensional neutron transport problem, in cartesian geometry, is proposed, on the basis of nodal schemes. In this context, one-dimensional equations are generated by an integration process of the multidimensional problem. Here, the integration is performed for the whole domain such that no iterative procedure between nodes is needed. The ADO method is used to develop analytical discrete ordinates solution for the one-dimensional integrated equations, such that final solutions are analytical in terms of the spatial variables. The ADO approach along with a level symmetric quadrature scheme, lead to a significant order reduction of the associated eigenvalues problems. Relations between the averaged fluxes and the unknown fluxes at the boundary are introduced as the usually needed, in nodal schemes, auxiliary equations. Numerical results are presented and compared with test problems.

Research highlights► Nodal equations for a two-dimensional neutron transport problem. ► Analytical Discrete Ordinates Method. ► Numerical results compared with the literature.

Related Topics
Physical Sciences and Engineering Energy Energy Engineering and Power Technology
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