DocumentCode :
7440
Title :
Criticality of Oklo Natural Reactors: Realistic Model of Reaction Zone 9
Author :
Bentridi, S.E. ; Gall, Brady ; Gauthier-Lafaye, F. ; Seghour, A. ; Pape, A. ; Medjadi, D.E.
Author_Institution :
Lab. d´Hydrologie et Geochim. de Strasbourg, Strasbourg, France
Volume :
60
Issue :
1
fYear :
2013
fDate :
Feb. 2013
Firstpage :
278
Lastpage :
283
Abstract :
Explanation of the so-called Oklo phenomenon can only be found by associating neutron physics and geological observations. The framework of Reactor Zone #9 (RZ9) from the Oklo uranium deposit in Gabon is discussed. A realistic model of RZ9 is proposed and studied with present-day numerical tools. Anchor points for this model are set by means of a selection of relevant parameters acting on geological conditions and neutron-transport physics, including ore homogeneity, initial reactor thickness, reflector effect and initial neutron poison content. Based on Monte Carlo simulations, the present modeling enables discussion of start-up conditions of the RZ9 reactor at optimal overlap of two opposing long-term processes: geochemical enrichment of the uranium content of the ore and its progressive impoverishment in 235U. On the basis of the present work, the inception and operation of Oklo natural reactors can be discussed from the largest to smallest initial core size, whereas before, only the largest ones had found some explanation.
Keywords :
Monte Carlo methods; fission reactor safety; fission reactor theory; geochemistry; geology; minerals; neutron transport theory; 235U impoverishment; Gabon; Monte Carlo simulations; Oklo natural reactor criticality; Oklo uranium deposit; RZ9 reactor; anchor points; geochemical enrichment; geological conditions; geological observations; initial core size; initial neutron poison content; initial reactor thickness; neutron physics; neutron-transport physics; ore homogeneity; present-day numerical tools; realistic reaction zone 9 model; reflector effect; Inductors; Materials; Monte Carlo methods; Neutrons; Rocks; Toxicology; Isocritical lines; Oklo phenomenon; natural fission reactors; numerical simulation; uranium deposit;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.2012.2227277
Filename :
6409965
Link To Document :
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