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      Obtaining the neutronic and thermal hydraulic parameters of the VVER-1000 Bushehr nuclear reactor core by coupling nuclear codes

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      1 , 2 ,
      Kerntechnik
      Carl Hanser Verlag

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          Abstract

          In this research, the simulation of one-sixth of the VVER-1000 reactor core is carried out by the WIMS-D4 nuclear code, based on the symmetry of the core and information obtained from the Final Safety Analysis Report. The atomic densities of some important nuclear materials and fission poisons are calculated by the WIMS-D4 code at the end of the first fuel cycle. In addition, the cross sections of some nuclides are obtained by WIMS-D4, and they are transferred into the CITATION code as inputs. In the next stage, neutron flux and reactor power are calculated by the CITATION code in Cold Zero Power and Hot Full Power status, and subsequently the heat flux of the core is obtained. Then the results are returned again into the extended program cycle. Finally, the heat flux of the core is inputted into the COBRA code, and the temperatures of fuel, clad and coolant are calculated along the various distances applying the COBRA thermal hydraulic code, through the results of the CITATION code and also initial data as default created from the Final Safety Analysis Report. In conclusion, there are some interesting outcomes resulting form the obtained results.

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          Most cited references7

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          Optimization of designing the core fuel loading pattern in a VVER-1000 nuclear power reactor using the genetic algorithm

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            Study of power distribution in the CZP, HFP and normal operation states of VVER-1000 (Bushehr) nuclear reactor core by coupling nuclear codes

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              The simulation of a model by SIMULINK of MATLAB for determining the best ranges for velocity and delay time of control rod movement in LWR reactors

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                Author and article information

                Journal
                kt
                Kerntechnik
                Carl Hanser Verlag
                0932-3902
                2195-8580
                18 December 2014
                : 79
                : 6
                : 528-531
                Affiliations
                1 Department of Nuclear Engineering, Science and Research Branch, Islamic Azad University, Tehran, Iran, E-mail: mrk_1358@ 123456yahoo.com
                2 Department of Physics, South Tehran Branch, Islamic Azad University, Tehran, Iran, E-mails: a_moosavi@ 123456azad.ac.ir , alireza_moosavi@ 123456yahoo.com
                Article
                KT110440
                10.3139/124.110440
                ad27fc87-d6fd-4523-885f-95b3e6c19d33
                © 2014, Carl Hanser Verlag, München
                History
                : 28 June 2014
                Page count
                References: 11, Pages: 4
                Categories
                Technical Notes/Technische Mitteilungen

                Materials technology,Materials for energy,Nuclear physics
                Materials technology, Materials for energy, Nuclear physics

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