Slant tube characterization for the implementation of k(0) - standardization in Nigerian Reseach Reactor-1
The result for large sample irradiation are continuously piping into the Center for Energy Research and Training (CERT), Ahmadu Bello University, Zaria. Therefore, characterization of the irradiation channels that can accommodate large samples become a challenge. In the first series of trial for lar...
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my.utm.809402021-02-23T03:06:49Z http://eprints.utm.my/id/eprint/80940/ Slant tube characterization for the implementation of k(0) - standardization in Nigerian Reseach Reactor-1 Abubakar, U. A. Sunday, J. A. Sadiq, U. Hamzah, K. QA Mathematics The result for large sample irradiation are continuously piping into the Center for Energy Research and Training (CERT), Ahmadu Bello University, Zaria. Therefore, characterization of the irradiation channels that can accommodate large samples become a challenge. In the first series of trial for large samples irradiation through slant tube of NIRR-1 which is a miniature research reactor is necessary in order to compare with some standard values reported by the arena of researchers including nuclear regulatory bodies. The thermal to epithermal flux ratio (f), epithermal neutron flux distribution parameters (α) were determined using two slant tube channels of NIRR-1. The adopted methodology here is bared and cadmium covered monitor foils method. The vertical dipstick higher purity germanium detector (HPGE) was calibrated and used for the calculation. The f and α values were calculated as 111.8 and -0.04977 respectively. The good agreement between the certified and experimental values of the shaping factors was achieved. Penerbit UTM Press 2017 Article PeerReviewed Abubakar, U. A. and Sunday, J. A. and Sadiq, U. and Hamzah, K. (2017) Slant tube characterization for the implementation of k(0) - standardization in Nigerian Reseach Reactor-1. Malaysian Journal of Fundamental and Applied Sciences, 13 (2). pp. 95-99. ISSN 2289-5981 http://dx.doi.org/10.11113/mjfas.v13n2.544 DOI: 10.11113/mjfas.v13n2.544 |
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The result for large sample irradiation are continuously piping into the Center for Energy Research and Training (CERT), Ahmadu Bello University, Zaria. Therefore, characterization of the irradiation channels that can accommodate large samples become a challenge. In the first series of trial for large samples irradiation through slant tube of NIRR-1 which is a miniature research reactor is necessary in order to compare with some standard values reported by the arena of researchers including nuclear regulatory bodies. The thermal to epithermal flux ratio (f), epithermal neutron flux distribution parameters (α) were determined using two slant tube channels of NIRR-1. The adopted methodology here is bared and cadmium covered monitor foils method. The vertical dipstick higher purity germanium detector (HPGE) was calibrated and used for the calculation. The f and α values were calculated as 111.8 and -0.04977 respectively. The good agreement between the certified and experimental values of the shaping factors was achieved. |
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Article |
author |
Abubakar, U. A. Sunday, J. A. Sadiq, U. Hamzah, K. |
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Abubakar, U. A. Sunday, J. A. Sadiq, U. Hamzah, K. |
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Abubakar, U. A. |
title |
Slant tube characterization for the implementation of k(0) - standardization in Nigerian Reseach Reactor-1 |
title_short |
Slant tube characterization for the implementation of k(0) - standardization in Nigerian Reseach Reactor-1 |
title_full |
Slant tube characterization for the implementation of k(0) - standardization in Nigerian Reseach Reactor-1 |
title_fullStr |
Slant tube characterization for the implementation of k(0) - standardization in Nigerian Reseach Reactor-1 |
title_full_unstemmed |
Slant tube characterization for the implementation of k(0) - standardization in Nigerian Reseach Reactor-1 |
title_sort |
slant tube characterization for the implementation of k(0) - standardization in nigerian reseach reactor-1 |
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Penerbit UTM Press |
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2017 |
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http://eprints.utm.my/id/eprint/80940/ http://dx.doi.org/10.11113/mjfas.v13n2.544 |
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