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The Stresa database: A token for the future

Patricia Pla, Luca Ammirabile, Alessandro Annunziato

Ann. Nucl. Energy, vol: 62 (2013), num: 0, Pages 8-16, published: 01 December 2013,


   Nuclear reactor physics.
      Nuclear power. Reliability and safety problems. Engineering problems.
         Nuclear energy and radiation utilization. Description and parameters of reactors, nuclear power stations and other nuclear installations.
            Power reactors and atomic electric power stations.

   Nuclear reactor physics.
      Nuclear power. Reliability and safety problems. Engineering problems.
         Accidents of reactors and NPP. Detection, experimental and calculational modelling and investigation of non-standard and accidental processes (methods and results).
            Shape and dimension changes, destruction of fuel elements and their claddings. Detection of cladding destruction.

   Nuclear reactor physics.
      Nuclear power. Reliability and safety problems. Engineering problems.
         Accidents of reactors and NPP. Detection, experimental and calculational modelling and investigation of non-standard and accidental processes (methods and results).
            In-core and in-vessel accidents. Loss of coolant accidents. Accidents with melting of constructions.

   Nuclear reactor physics.
      Nuclear power. Reliability and safety problems. Engineering problems.
         Accidents of reactors and NPP. Detection, experimental and calculational modelling and investigation of non-standard and accidental processes (methods and results).
            Accidents of technological equipment and pipelines.

   Nuclear reactor physics.
      Reactor and reactor installation dynamics. Control and direction.
         Accidental and non-standard non-stationary processes (theory, calculation, experiment).

   Nuclear reactor physics.
      Theory and calculation of nuclear reactors and radiation transport.
         Calculation methods and computer codes.
            Computer codes. Expert systems. Data bases.

   Nuclear reactor physics.
      Reactor and reactor installation dynamics. Control and direction.
         Reactor installation dynamics (theory, calculation, experiment). Mathematical models of nuclear power installation and their components. Simulators.

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