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Search: L773:0894480596

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1.
  • Demaziere, Christophe, 1973, et al. (author)
  • Calculation of the eigenfunctions and corresponding eigenvalues of the two-group diffusion equation in heterogeneous systems
  • 2007
  • In: Proc. Joint Int. Topl. Mtg. Mathematics & Computation and Supercomputing in Nuclear Applications (M & C + SNA 2007). - 0894480596
  • Conference paper (peer-reviewed)abstract
    • This paper deals with the extension of an existing code developed at the Department of Nuclear Engineering, Chalmers University of Technology, to the calculation of the higher order eigenfunctions and corresponding eigenvalues of the two-group diffusion equations. More specifically, this code, originally meant for calculating the two-group static neutron flux and its adjoint for any two-dimensional heterogeneous system, is modified in order to calculate any higher mode of both the neutron flux and its adjoint. A one-dimensional two-region system is first considered for benchmark purposes, where the reference solution can be determined semi-analytically. The numerical solution is computed using a modified power iteration method. The agreement between the numerical solution and the reference solution is found to be excellent, both regarding the eigenfunctions and the eigenvalues, and both for the forward and adjoint problems. The modified power iteration method is then applied to the calculation of the different modes of the neutron flux and its adjoint in a two-dimensional heterogeneous representation of the Swedish Forsmark-1 BWR core corresponding to the 1996/1997 channel instability event.
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2.
  • Sunde, Carl, 1976, et al. (author)
  • Investigation of the validity of the point-kinetic approximation and of the break-frequency method in 2-D subcritical systems
  • 2007
  • In: Proc. Joint Int. Topl. Mtg. Mathematics & Computation and Supercomputing in Nuclear Applications (M & C + SNA 2007). - 0894480596
  • Conference paper (peer-reviewed)abstract
    • The accuracy and applicability of the break-frequency method for estimating the reactivity in a subcritical 2-D, 2-group reflected system with a distributed source is investigated for two different system sizes. The source is distributed according to the static thermal flux. This method could be useful in power reactor cores during loading conditions for determining the subcriticality. The validity of the point-kinetic approximation in the same systems is also tested. A neutron noise simulator is used to calculate the actual neutron noise induced by fluctuations of the source which is compared with the analytically calculated point-kinetic term. The break-frequency method is used to estimate the reactivity from the neutron noise calculated by the simulator. The conclusion of this work is that the point-kinetic approximation in general is not valid in 2-D, 2-group reflected systems and hence the break-frequency method is not valid either.
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  • Result 1-2 of 2
Type of publication
conference paper (2)
Type of content
peer-reviewed (2)
Author/Editor
Demaziere, Christoph ... (2)
Sunde, Carl, 1976 (2)
Pazsit, Imre, 1948 (1)
University
Chalmers University of Technology (2)
Language
English (2)
Research subject (UKÄ/SCB)
Engineering and Technology (2)
Year

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