Please use this identifier to cite or link to this item: http://dspace.chitkarauniversity.edu.in/xmlui/handle/123456789/186
Title: Homogenization Effects of VVER-1000 Fuel Assembly on Criticality Calculations
Authors: Shauddin, S. M.
Keywords: Physics
Radiation Physics
Homogenization effect
Criticality calculation
Thermal neutron
Point kinetic parameter
VVER-1000
Homogenization
Criticality
Issue Date: 10-Aug-2020
Publisher: Chitkara University Publications
Series/Report no.: ;CHAENG/2013/51628
Abstract: Due to cost effective and simplicity homogeneous reactors have been widely used for experimental and research purposes. Parameters which are difficult to get from a heterogeneous reactor system can be easily obtained from a homogeneous reactor system and can be applied in the heterogeneous reactor system if the major parametric differences are known. In this study, homogenization effects of VVER (Water Water Energetic Reactor)-1000 fuel assembly on neutronic parameters have been analyzed with the universal probabilistic code MCNP (Monte Carlo N-Particle). The infinite multiplication factor (k∞) has been calculated for the reconfigured heterogeneous and homogenous fuel assembly models with 2 w/o U-235 enriched fuel at room temperature. Effect of mixing soluble boron into the moderator/coolant (H2O) has been investigated for both models. Direct and fission detected thermal to higher energy neutron ratio also has been investigated. Relative power distributions of both models have been calculated at critical and supercritical states. Burnup calculations for both the reconfigured cores have been carried out up to 5 years of operation. Effective delayed neutron fraction (βeff) and prompt removal lifetime (ℓ) also have been evaluated. All the results show significant differences between the two systems except the average relative power.
URI: http://dspace.chitkarauniversity.edu.in/xmlui/handle/123456789/186
ISSN: 2321-8649
2321-9289
Appears in Collections:Vol. 8 No. 1 (2020)

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