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The use of representativity theory in the depletion calculations of SFR blankets

Jean-François Lebrat, Jean Tommasi

Ann. Nucl. Energy, vol: 101, num: 0, 429-433, published: 01 March 2017,


   Nuclear reactor physics.
      Theory and calculation of nuclear reactors and radiation transport.
         Reactors calculations.
            Intermediate and fast reactors.

   Nuclear reactor physics.
      Theory and calculation of nuclear reactors and radiation transport.
         Calculation methods and computer codes.
            Methods for solution of isotope kinetics problems and for calculation of fuel cycle parameters.

   Nuclear reactor physics.
      Theory and calculation of nuclear reactors and radiation transport.
         Reactors calculations.
            Calculations of fuel isotope composition changes (during fuel cycle and under postirradiation storage) and other fuel cycle parameters. Fuel management calculations. Calculations of radionuclides and actinides build-up.

   Nuclear reactor physics.
      Theory and calculation of nuclear reactors and radiation transport.
         Reactors calculations.
            Sensitivity of calculational results to variations of input data. Evaluation of calculation uncertainties.

   Nuclear reactor physics.
      Experimental investigations (methods, results, analysis).
         Determination of fuel composition, fuel burn-up, fission products contents and distribution, changes of fuel composition during fuel cycle and under post-irradiation storage.

   Nuclear reactor physics.
      Experimental investigations (methods, results, analysis).
         Experimental techniques and methods. Planning of experiment and experimental data treatment.
            Planning of experiment and experimental data treatment (methods, means, codes, results).Corrections determination. Error analysis. Determination and taking into account of detector efficiency. Inverse problems solving.

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