Devesh Raj
Bhabha Atomic Research Centre
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Volume 1: Plant Operations, Maintenance, Installations and Life Cycle; Component Reliability and Materials Issues; Advanced Applications of Nuclear Technology; Codes, Standards, Licensing and Regulato | 2008
V. Jagannathan; Usha Pal; R. Karthikeyan; Devesh Raj
Loading of seedless thoria rods in internal blanket regions and using them later as part of seeded fuel assemblies is the central theme of the thorium breeder reactor (ATBR) concept [1]. The fast reactors presently consider seedless blanket region surrounding the seeded core region. This results in slower fissile production rate in comparison to fissile depletion rate per unit volume. The overall breeding is achieved mainly by employing blanket core with more than double the volume of seeded core. The blanket fuel is discharged with fissile content of ∼30g/kg, which is much less than the asymptotic maximum possible fissile content of 100g/kg. This is due to smaller coolant flow provided for in the blanket regions. In a newly proposed fast thorium breeder reactor (FTBR) [2], the blanket region is brought in and distributed through out the core. By this the fissile depletion and production rates per unit volume become comparable. The core considered simultaneous breeding from both fertile thoria and depleted uranium and hence the concept can be called as fast twin breeder reactor as well. Sodium is used as coolant. The blanket fuel rods achieve nearly 80% of the seed fuel rod burnup and also contain nearly the maximum possible fissile content at the time of discharge. In this paper a comparison of FTBR core characteristics with oxide and metallic fuel are compared.Copyright
European Physical Journal A | 2011
H. Naik; P. M. Prajapati; S. V. Surayanarayana; K. C. Jagadeesan; S. V. Thakare; Devesh Raj; V. K. Mulik; B. S. Sivashankar; B. K. Nayak; S. C. Sharma; S. Mukherjee; Sarbjit Singh; A. Goswami; S. Ganesan; V. K. Manchanda
Nuclear Physics | 2011
H. Naik; V.T. Nimje; Devesh Raj; S. V. Suryanarayana; A. Goswami; Sarbjit Singh; S.N. Acharya; K.C. Mittal; S. Ganesan; P. Chandrachoodan; V. K. Manchanda; V. Venugopal; S. Banarjee
Nuclear Instruments & Methods in Physics Research Section B-beam Interactions With Materials and Atoms | 2011
H. Naik; Sarbjit Singh; Ashok Goswami; V. K. Manchanda; Guinyun Kim; Kyung Sook Kim; Manwoo Lee; Md. Shakilur Rahman; Devesh Raj; S. Ganesan; S. V. Suryanarayana; Moo-Hyun Cho; Won Namkung
European Physical Journal A | 2009
H. Naik; Sarbjit Singh; A. V. R. Reddy; V. K. Manchanda; S. Ganesan; Devesh Raj; Md. Shakilur Rahman; Kyung-Sook Kim; Manwoo Lee; Guinyun Kim; Youngdo Oh; Hee-Seock Lee; Moo-Hyun Cho; In Soo Ko; Won Namkung
Journal of Radioanalytical and Nuclear Chemistry | 2012
H. Naik; S. V. Surayanarayana; V. K. Mulik; P. M. Prajapati; B. S. Shivashankar; K. C. Jagadeesan; S. V. Thakare; Devesh Raj; S. C. Sharma; P. V. Bhagwat; S.D. Dhole; S. Ganesan; V.N. Bhoraskar; Ashok Goswami
Journal of the Korean Physical Society | 2008
Haladhara Naik; Annareddy Venkat Ramann Reddy; S. Ganesan; Devesh Raj; Kwangsoo Kim; Guinyun Kim; Young Do Oh; Duc Khue Pham; Moo-Hyun Cho; In Soo Ko; Won Namkung
European Physical Journal A | 2011
H. Naik; Sarbjit Singh; Ashok Goswami; V. K. Manchanda; S. V. Suryanarayana; Devesh Raj; S. Ganesan; Md. Shakilur Rahman; Kyung Sook Kim; Man Woo Lee; Guinyun Kim; Moo-Hyun Cho; In Soo Ko; Won Namkung
Journal of Radioanalytical and Nuclear Chemistry | 2010
H. Naik; Guinyun Kim; Ashok Goswami; Sarbjit Singh; V. K. Manchanda; Devesh Raj; S. Ganesan; Young Do Oh; Hee-Seock Lee; Kyung Sook Kim; Manwoo Lee; Moo-Hyun Cho; In Soo Ko; Won Namkung
Nuclear Instruments & Methods in Physics Research Section B-beam Interactions With Materials and Atoms | 2009
H. Naik; Sarbjit Singh; A.V.R. Reddy; V. K. Manchanda; Guinyun Kim; Kyung Sook Kim; Manwoo Lee; S. Ganesan; Devesh Raj; Hee-Seock Lee; Young Do Oh; Moo-Hyun Cho; In Soo Ko; Won Namkung