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Effective single-group coefficient of neutron diffusion in reactor grids

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Literature Cited

  1. N. I. Laletin and A. V. El'shin, “Refining the method of homogenizing a heterogeneous reactor,” At. Energ.,43, No. 3, 247–251 (1977); N. I. Laletin, “Equations of a heterogeneous reactor,” Vopr. At. Nauk. Tekh., Ser. Fiz. Tekh. Yad. Reakt., No. 5(18), 31–46 (1981); N. I. Laletin, “Basic principles for developing equation for heterogeneous reactor — a modification of the homogenization method,” Nucl. Sci. Eng.,85, 133 (1983).

    Google Scholar 

  2. A. V. El'shin, “Basis and refinement of the method of homogenizing a heterogeneous reactor,” Author's Abstract of Candidate's Dissertation, Moscow (1979).

  3. N. I. Laletin, in: Proceedings of the Second International Conference on the Pea ceful Use of Atomic Energy. Contributions by Soviet Participants [in Russian], Vol. 2, Atomizdat, Moscow (1959), pp. 634–650; G. Ya. Rumyantsev, “Neutron diffusion in a periodic lattice,” At. Energ.,13, No. 6, 556–559 (1962).

    Google Scholar 

  4. P. Benoist, “Streaming effects and collision probabilities in lattices,” Nucl. Sci. Eng.,34, 285 (1968); E. Gelbard, “Anisotropic neutron diffusion in lattices of the zero-power plutonium reactor experiments,” Nucl. Sci. Eng.,54, 327 (1974); R. Bonalumy, “A united theory of cell diffusion coefficients,” Energ. Nucl.,18, No. 7/8, 718 (1971).

    Google Scholar 

  5. V. F. Boyarinov and I. A. Zhokina, Program for the Single-Group Calculation of Antisymmetric Neutron Distributions in a Cylindrical Cell of a Reactor (ORAR-Ts) [in Russian], Preprint IAÉ-3873/5, Institute of Atomic Energy, Moscow (1984).

    Google Scholar 

  6. I. S. Grigor'ev and V. M. Novikov, Neutron Diffusion in Heterogeneous Media [in Russian], Atomizdat, Moscow (1966).

    Google Scholar 

  7. G. I. Bell and S. Glasstone, Nuclear Reactor Theory, Van Nos Reinhold (1970).

  8. Yu. P. Elagin, A. S. Il'yashenko, V. A. Lyul'ka, et al., “Comparison of some methods of calculating neutron fluxes in the technological channel of a reactor,” At. Energ.,48, No. 2, 148–153 (1980).

    Google Scholar 

  9. S. Glasstone and M. Edlund, Principles of the Theory of Nuclear Reactors [Russian translation], IL, Moscow (1954).

    Google Scholar 

  10. V. S. Vladimirov, “Mathematical problems of the single-velocity theory of particle transfer,” in: Proceedings of the V. A. Steklov Mathematical Institute, Academy of Sciences of the USSR [in Russian], Izd. Akad. Nauk SSSR, Moscow (1961). G. Ya. Rumyantsev, “Boundary conditions in the spherical-harmonic method,” At. Energ.,10, No. 1, 26–29 (1961).

    Google Scholar 

  11. N. I. Laletin and N. V. Sultanov, “Development of the surface-pseudosource method for calculating neutron field in cells with a bundle of fuel-element rods,” At. Energ.,46, No. 3, 148–152 (1979).

    Google Scholar 

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Translated from Atomnaya Énergiya, Vol. 59, No. 2, pp. 91–96, August, 1985.

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Laletin, N.I., Boyarinov, V.F. Effective single-group coefficient of neutron diffusion in reactor grids. At Energy 59, 631–639 (1985). https://doi.org/10.1007/BF01122480

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