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| 1 | Activation characteristics of candidate structural materials for a near-term Indian fusion reactor and the impact of their impurities on design considerations显示文摘Activation analyses play a vital role in nuclear reactor design.Activation analyses,along with nuclear analyses,provide important information for nuclear safety and maintenance strategies.Activation analyses also help in the selection of materials for a nuclear reactor,by providing the radioactivity and dose rate levels after irradiation.This information is important to help define maintenance activity for different parts of the reactor,and to plan decommissioning and radioactive waste disposal strategies.The study of activation analyses of candidate structural materials for near-term fusion reactors or ITER is equally essential,due to the presence of a highenergy neutron environment which makes decisive demands on material selection.This study comprises two parts; in the first part the activation characteristics,in a fusion radiation environment,of several elements which are widely present in structural materials,are studied.It reveals that the presence of a few specific elements in a material can diminish its feasibility for use in the nuclear environment.The second part of the study concentrates on activation analyses of candidate structural materials for near-term fusion reactors and their comparison in fusion radiation conditions.The structural materials selected for this study,i.e.India-specific Reduced Activation Ferritic-Martensitic steel(IN-RAFMS),P91-grade steel,stainless steel 316 LN ITER-grade(SS-316 LN-IG),stainless steel 316 L and stainless steel 304,are candidates for use in ITER either in vessel components or test blanket systems.Tungsten is also included in this study because of its use for ITER plasma-facing components.The study is carried out using the reference parameters of the ITER fusion reactor.The activation characteristics of the materials are assessed considering the irradiation at an ITER equatorial port.The presence of elements like Nb,Mo,Co and Ta in a structural material enhance the activity level as well as the dose level,which has an impact on design considerations.IN-RAFMS was shown to be a more effective low-activation material than SS-316 LN-IG. | H L SWAMI C DANANI A K SHAW | 2018 | Plasma Science and Technology2018,20,6: | 2 |
| 2 | The Hardest Known Oxide显示文摘 | Dubrovinsky L S DubrovinskaiaN A Swamy V | 2001 | Nature2001,410,6829: | 1 |
| 3 | The Hardest Known Oxide显示文摘 | Dubrovinsky L S Dubrovinskaia N A Swamy V | 2001 | Nature2001,410,: | 1 |
| 4 | Modeling and analysis of trust mana-gement with trust chain optimization in mobile Ad hoc networks显示文摘 | Cho J H Swami A Chen L R | 2012 | Journal of Network and Computer Applications2012,35,3: | 1 |
| 5 | Compressibility of Baddeleyite-Type TiO2 from Static Compression to 40 GPa 显示文摘 | Swamy V Dubrovinskaia N A Dubrovinsky L S | 2002 | J Alloys Compd2002,340,: | 1 |
| 6 | Structural behaviour of high strength concrete beams 显示文摘 | Swamy R N Anand K L | 1974 | Building Science1974,9,2: | 1 |
| 7 | Bioleaehing of sukinda laterite using ultrasonics 显示文摘 | Sukla L B Swamy K M Narayana K L | 1995 | Hydrometallurgy1995,37,3: | 1 |
| 8 | Higher-order speetral analysis toolbox user's guide显示文摘 | Swami A Medal J M Nikias C L | 1998 | The Math Works Inc1998,,: | 1 |
| 9 | Embryology of Orchidaceae 显示文摘 | Swamy B G L | 1943 | Current Science1943,12,: | 1 |
| 10 | Decentralized cognitive MAC for opportunistic spectrum access in ad hoc networks:A POMDP framework显示文摘 | ZHAO Q TONG L SWAMI A | 2007 | IEEE Journal on Selected Areas in Communications2007,25,3: | 1 |
| 11 | Intensification of leaching process by dual-frequency ultrasound显示文摘 | Swamy M Narayana K L | 2001 | Ultrasonics Sonochemistry2001,,8: | 1 |
| 12 | Effects of Feeding Blends of Grains Naturally Contaminated with Fusarium Mycotoxins on Production and Metabolism in Broiler 显示文摘 | Swamy H V L N Smith T K Cotter P F | 2002 | Poult Sci2002,81,7: | 1 |
| 13 | Decentralized Cognitive MAC for Opportunistic Spectrum Access in Ad Hoc Networks:A POMDP Framework显示文摘 | Q Zhao L Tong A Swami | | 0,,0733: | 1 |
| 14 | Intensification of leaching process by dual-frequncy ultrasound 显示文摘 | Swamy K M Narayana K L | 2001 | Ultrasonics Sonochemistry2001,,8: | 1 |
| 15 | Dually residuated lattice ordered semigroups III 显示文摘 | Swamy K L N | 1966 | Math Ann1966,167,: | 1 |
| 16 | Semiblind channel estimation for space-time coded WCDMA 显示文摘 | Sung Y Tong L Swami A | 2002 | Signals Systems and Computers2002,36,: | 1 |
| 17 | The hardest known oxide 显示文摘 | Dubrovinsky L S Dubrovinskaia N A Swamy V | 2001 | Nature2001,410,: | 1 |
| 18 | Surgical excision of meningiomnas involving the clivus: Preoperative and intraoperative features as predictors of postoperati fumctional doterioration显示文摘 | Swamy N-KS Jaiswal V | 1994 | J Neurosurg1994,81,: | 1 |
| 19 | Decentralized Cognitive MAC for Opportunistic Spectrum Access in Ad Hoc Networks: A POMDP Framework 显示文摘 | ZHAO Qing TONG L SWAMI A | 2007 | Selected Areas in Communications IEEE2007,25,3: | 1 |
| 20 | Decentralized cognitive MACfor opportunistic spectrum access in ad hoc networks:a POMDPframework显示文摘 | ZHAO Q TONG L SWAMI A | 2007 | IEEE J SelectedAreas Commun2007,25,3: | 1 |