Three-dimensional transport calculation method for eigenvalue problems using diffusion synthetic acceleration

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Abstract

A three-dimensional transport code “TRITAC” for solving eigenvalue problems in reactor cores has been developed on the basis of discrete ordinates method with the diffusion synthetic acceleration technique. The Larsen procedure for the diffusion synthetic acceleration method has been extended to three-dimensional geometry. With the procedure a spatially differenced diffusion synthetic equation has been derived and implemented in the TRITAC code. In the X-Y geometry the code yielded the same results as the TWOTRAN-H code. Three-dimensional eigenvalue problems for thermal and fast reactors have been solved and the computational time has been compared with that required for the three-dimensional discrete ordinates calculation with the rebalance acceleration technique. © 1985 Taylor & Francis Group, LLC.

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Bando, M., Yamamoto, T., Saito, Y., & Takeda, T. (1985). Three-dimensional transport calculation method for eigenvalue problems using diffusion synthetic acceleration. Journal of Nuclear Science and Technology, 22(10), 841–850. https://doi.org/10.1080/18811248.1985.9735733

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