V. Jagannathan
Bhabha Atomic Research Centre
10 Papers
34 Citations
V. Jagannathan is an academic researcher from Bhabha Atomic Research Centre. The author has contributed to research in topics: Finite element method & Light-water reactor. The author has an hindex of 5, co-authored 10 publications.
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Papers
A VVER-1000 LEU and MOX assembly computational benchmark analysis using the lattice burnup code EXCEL
TL;DR: In this paper, the lattice burnup code EXCEL was used to predict the neutronics behavior of a VVER-1000 LEU and MOX assembly with a burnup of 40MWD/kg of heavy metal.
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Quick and reliable estimation of power distribution in a PHWR by ANN
TL;DR: The methodology of ANN, its reliability, the validation range, and scope for its possible on-line use in the actual reactor are described.
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A fast and reliable calculation model for BWR fuel assembly burnup analyses
TL;DR: In this article, a code called superb has been developed for the BWR fuel assembly burnup analyses using a supercell model, which is achieved by building isotopic densities in each fuel pin separately while the depletion equations are solved only in a few group of pins or burnup zones and the multigroup neutron spectra are differentiated in fewer group of pincell types.
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VVER-1000 MOX Core Computational Benchmark analysis using indigenous codes EXCEL, TRIHEX-FA and HEXPIN
TL;DR: In this article, the evaluation of the VVER-1000 MOX core computational benchmark has been carried out using three computational codes, namely EXCEL, TRIHEX-FA and HEXPIN, developed at Light Water Reactor Physics Section (LWRPS), RPDD, BARC, and associated nuclear data library (JEF22XS).
10
Application of the finite-element-synthesis model to multidimensional reactor transient problems without feedback
TL;DR: The finite-element-synthesis model has been employed to solve time-dependent multigroup diffusion equations with multiple delayed-neutron precursor groups and the results are in good agreement with those of other less approximate methods, except for the problems in which the reflector zone is perturbed.
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