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Sergey Chernezhenko

Publications and source records attributed to Sergey Chernezhenko.

2 recordsLinked to original sources

Temperature-Dependent Neutron Moderation Model Including Inelastic Scattering in Reactor Media

In this study, a mathematical model of neutron moderation is developed that accounts for the temperature of the fissile medium and the contribution of inelastic neutron scattering on heavy nuclei of uranium 238 in reactor cores. Within the gas model framework, an analytical expression for the inelastic neutron scattering law for an isotropic neutron source is derived for the first time, incorporating the temperature of the moderating medium as a parameter. The scattering law is obtained from the general kinematic solution of inelastic neutron nucleus interactions in the laboratory system, where both particles possess arbitrary velocity vectors. Based on the newly derived inelastic and previously obtained elastic scattering laws, analytical formulas for the neutron flux density and moderation spectrum are presented, both of them dependents on the medium temperature. The calculated deceleration spectra exhibit two distinct maxima (a high energy and a low energy peaks). The low energy maximum is consistent with the analytical solution of the neutron balance equation, confirming the validity of the proposed model. The developed approach provides a deeper understanding of neutron energy distribution in temperature dependent reactor media and can be applied to improve the accuracy of neutron kinetic calculations in thermal and fast reactor systems.

physics.ins-det

Experimental fast channel reactor operating in the traveling wave mode of nuclear fissions with a soft fast neutron spectrum

This paper presents the principle scheme of the prototype of the fast single channel reactor operating in the traveling wave fission mode on the soft fast neutron spectrum. The reactor design has cylindrical symmetry. The problem of the radiation resistance construction materials in this experimental reactor is solved by the base proposals published by the authors of this article. The traveling wave fission mode is realised by the neutrons with the softened fast spectrum. The neutron spectrum peaks is in range 20000 - 50000 eV. That reduces the neutron impact on construction materials more than an order of magnitude. To further reducing neutron impact on construction materials in the reactor using elements of the hydravlic fuel handling system for nuclear fuel movement relative to the fuel channel walls. The nuclear fuel in which the fission wave travels is the cylindrical uranium dicarbide.

physics.ins-det