Published November 2009 | Version v1
Miscellaneous Open

Thorium-Based Fuels Preliminary Lattice Cell Studies for Candu Reactors

  • 1. Institute for Nuclear Research Pitesti (Romania)

Description

The choice of nuclear power as a major contributor to the future global energy needs must take into account acceptable risks of nuclear weapon proliferation, in addition to economic competitiveness, acceptable safety standards, and acceptable waste disposal options. Candu reactors offer a proven technology, safe and reliable reactor technology, with an interesting evolutionary potential for proliferation resistance, their versatility for various fuel cycles creating premises for a better utilization of global fuel resources. Candu reactors impressive degree of fuel cycle flexibility is a consequence of its channel design, excellent neutron economy, on-power refueling, and simple fuel bundle. These features facilitate the introduction and exploitation of various fuel cycles in Candu reactors in an evolutionary fashion. The main reasons for our interest in Thorium-based fuel cycles have been, globally, to extend the energy obtainable from natural Uranium and, locally, to provide a greater degree of energy self-reliance. Applying the once through Thorium (OTT) cycle in existing and advanced Candu reactors might be seen as an evaluative concept for the sustainable development both from the economic and waste management points of view. Two Candu fuel bundles project will be used for the proposed analysis, namely the Candu standard fuel bundle with 37 fuel elements and the CANFLEX fuel bundle with 43 fuel elements. Using the Canadian proposed scheme - loading mixed ThO2-SEU CANFLEX bundles in Candu 6 reactors - simulated at lattice cell level led to promising conclusions on operation at higher fuel burnups, reduction of the fissile content to the end of the cycle, minor actinide content reduction in the spent fuel, reduction of the spent fuel radiotoxicity, presence of radionuclides emitting strong gamma radiation for proliferation resistance benefit. The calculations were performed using the lattice codes WIMS and Dragon (together with the corresponding nuclear data library based on ENDF/B-VII)

Files

42009885.pdf

Files (587.0 kB)

Name Size Download all
md5:43ff1125fb0fb49ec12fc667c8a7ca70
587.0 kB Preview Download
Part of:
Proceeding of the seventh Nuclear and Particle Physics Conference (NUPPAC-2009)

Additional details

Publishing Information

Imprint Title
Proceeding of the seventh Nuclear and Particle Physics Conference (NUPPAC-2009)
Imprint Pagination
662 p.
Journal Page Range
p. 239-249
Report number
INIS-EG--217

Conference

Title
7. Conference on Nuclear and Particle Physics
Acronym
NUPPAC,09
Dates
11-15 Nov 2009
Place
Sharm El-Sheikh (Egypt)

Optional Information