The objective of the present research is to assess the feasibility design of small long-life Gas Cooled Fast Reactor with helium as coolant. GCFR included in the Generation-IV reactor systems are being developed to provide sustainable energy resources that meet future energy demand in a reliable, safe, and proliferation-resistant manner. This reactor can be operated without enrichment and reprocessing forever, once it starts. To obtain the capability of consuming natural uranium as fuel cycle input modified CANDLE burn-up scheme was adopted in this system with different core design. This study has compared the core with three designs of core reactors with the same thermal power 600 MWth. The fuel composition each design was arranged by divided core into several parts of equal volume axially i.e. 6, 8 and 10 parts related to material burn-up history. The fresh natural uranium is initially put in region 1, after one cycle of 10 years of burn-up it is shifted to region 2 and the region 1 is filled by fresh natural uranium fuel. This concept is basically applied to all regions, i.e. shifted the core of the region (i) into region (i+1) region after the end of 10 years burn-up cycle. The calculation results shows that for the burn-up strategy on “Region-8” and “Region-10” core designs, after the reactors start-up the operation furthermore they only needs natural uranium supply to the next life operation until one period of refueling (10 years).
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11 March 2016
THE 4TH INTERNATIONAL CONFERENCE ON THEORETICAL AND APPLIED PHYSICS (ICTAP) 2014
16–17 October 2014
Bali, Indonesia
Research Article|
March 11 2016
The study of capability natural uranium as fuel cycle input for long life gas cooled fast reactors with helium as coolant
Menik Ariani;
Menik Ariani
a)
1Department of Physics, Faculty of Mathematics and Natural Sciences,
Sriwijaya University
, jl Palembang-Prabumulih km 32 Indralaya OganIlir, South of Sumatera, Indonesia
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Octavianus Cakra Satya;
Octavianus Cakra Satya
1Department of Physics, Faculty of Mathematics and Natural Sciences,
Sriwijaya University
, jl Palembang-Prabumulih km 32 Indralaya OganIlir, South of Sumatera, Indonesia
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Fiber Monado;
Fiber Monado
1Department of Physics, Faculty of Mathematics and Natural Sciences,
Sriwijaya University
, jl Palembang-Prabumulih km 32 Indralaya OganIlir, South of Sumatera, Indonesia
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Zaki Su’ud;
Zaki Su’ud
2Nuclear and Biophysics Research Division, Faculty of Mathematics and Natural Sciences,
Bandung Institute of Technology
, jlGanesha 10, Bandung, Indonesia
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Hiroshi Sekimoto
Hiroshi Sekimoto
3CRINES,
Tokyo Institute of Technology
, 2-12-11N1-17 Ookayama, Meguro-Ku, Tokyo, Japan
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Menik Ariani
1,a)
Octavianus Cakra Satya
1
Fiber Monado
1
Zaki Su’ud
2
Hiroshi Sekimoto
3
1Department of Physics, Faculty of Mathematics and Natural Sciences,
Sriwijaya University
, jl Palembang-Prabumulih km 32 Indralaya OganIlir, South of Sumatera, Indonesia
2Nuclear and Biophysics Research Division, Faculty of Mathematics and Natural Sciences,
Bandung Institute of Technology
, jlGanesha 10, Bandung, Indonesia
3CRINES,
Tokyo Institute of Technology
, 2-12-11N1-17 Ookayama, Meguro-Ku, Tokyo, Japan
a)
Corresponding author: [email protected]
AIP Conf. Proc. 1719, 030038 (2016)
Citation
Menik Ariani, Octavianus Cakra Satya, Fiber Monado, Zaki Su’ud, Hiroshi Sekimoto; The study of capability natural uranium as fuel cycle input for long life gas cooled fast reactors with helium as coolant. AIP Conf. Proc. 11 March 2016; 1719 (1): 030038. https://doi.org/10.1063/1.4943733
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