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- W112778906 abstract "A method of the evaluation of the defect production rate in metals irradiated with neutrons in various power units has been proposed. The method is based on the calculation of the radiation damage rate using nuclear models and the NRT model and the use of corrections obtained from the analysis of available experimental data and from the molecular dynamics simulation. A method combining the method of the molecular dynamics and the binary collision approximation model was proposed for the calculation of the number of defects in irradiated materials. The method was used for the displacement cross-section calculation for tantalum and tungsten irradiated with protons at energies from several keV up to 1 GeV and with neutrons at energies from 10 -5 eV to 1 GeV. A new approach has been proposed for the calculation of the non-equilibrium fragment yields in nuclear reactions at intermediate and high energies. It was used for the evaluation of the non-equilibrium component of the 4 He and 3 He production cross-section. The helium production cross-section has been obtained for iron, 181 Ta and tungsten at proton energies from several MeV to 25 GeV and for 181 Ta and tungsten at neutron energies up to 1 GeV. A new model for the simulation of interactions of intermediate and high energy particles with nuclei was discussed. The non-equilibrium particle emission is simulated by the intranuclear cascade model using the Monte Carlo method. The deterministic evaporation model is used for the description of the equilibrium de-excitation. The model was used for the analysis of radionuclide yields in proton induced reactions at energies from 0.8 to 2.6 GeV. The results of calculations show the advantage of the model proposed in accuracy of predictions comparing with other popular intranuclear cascade evaporation models. A new approach was proposed for the calculation of non-equilibrium deuteron energy distributions in nuclear reactions induced by nucleons of intermediate energies. The calculated deuteron energy distributions are in a good agreement with the measured data for nuclei from 12 C to 209 Bi. The energy deposition has been calculated for the targets from lithium to uranium irradiated with intermediate energy protons using the models from the MCNPX code package and the CASCADE/INPE code." @default.
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- W112778906 date "2006-01-01" @default.
- W112778906 modified "2023-09-24" @default.
- W112778906 title "Development of calculation methods to analyze radiation damage, nuclide production and energy deposition in ADS materials and nuclear data evaluation" @default.
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