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Results 1 to 25 of 1577

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Analysis on fuel cycle schemes in the dual-cooled waste transmutation blanket for the FDS-IZHU, X; ZHENG, S; LI, J et al.Fusion engineering and design. 2006, Vol 81, Num 1-7, pp 851-857, issn 0920-3796, 7 p.Conference Paper

Future trends in reprocessingROUYER, H.Radiation protection dosimetry. 1994, Vol 53, Num 1-4, pp 27-33, issn 0144-8420Conference Paper

Contribution à l'élaboration et la qualification de la bibliothèque DARLING des données nucléaires de base du formulaire multi-filière DARWIN de la physique du cycle du combustible = Contribution to the development and qualification of the DARLING nuclear data library for the multi-purpose DARWIN inventory codeStorrer, François; Thomas, J.-B.1993, 399 p.Thesis

Nuclear power and the fuel cycleRIZWAN-UDDIN.International journal of nuclear governance, economy and ecology (Print). 2010, Vol 3, Num 2, pp 111-116, issn 1742-4186, 6 p.Article

The application of systems engineering principles to the prioritization of sustainable nuclear fuel cycle optionsPRICE, Robert R; SINGH, Bhupinder P; MACKINNON, Robert J et al.Energy policy. 2013, Vol 53, pp 205-217, issn 0301-4215, 13 p.Article

Mechanical design and first experimental results of an upgraded technical PERMCAT reactor for tritium recovery in the fuel cycle of a fusion machineWELTE, S; DEMANGE, D; WAGNER, R et al.Fusion engineering and design. 2010, Vol 85, Num 7-9, pp 1320-1325, issn 0920-3796, 6 p.Conference Paper

Characterisation of a multitube PERMCAT reactor in view of a technical facility for highly tritiated water processing at the Tritium Laboratory KarlsruheWELTE, S; DEMANGE, D; WAGNER, R et al.Fusion engineering and design. 2011, Vol 86, Num 9-11, pp 2237-2240, issn 0920-3796, 4 p.Conference Paper

French experiences and perspectives on plutonium recycling in the existing power fleetBERNARD, Patrice.Progress in nuclear energy (New series). 2007, Vol 49, Num 8, pp 583-588, issn 0149-1970, 6 p.Conference Paper

Comparing the heat of combustion of fossil fuels to the heat accumulated by their lifecycle greenhouse gasesSATHRE, Roger.Fuel (Guildford). 2014, Vol 115, pp 674-677, issn 0016-2361, 4 p.Article

Calibrating a gas chromatograph to measure tritium using calorimetryKÖLLÖ, Zoltan; DEMANGE, David; BORNSCHEIN, Beate et al.Fusion engineering and design. 2009, Vol 84, Num 7-11, pp 1073-1075, issn 0920-3796, 3 p.Conference Paper

Tritium inventory assessment for ITER using TRIMOCRISTESCU, Ioana-R; CRISTESCU, I; MURDOCH, D et al.Fusion engineering and design. 2006, Vol 81, Num 1-7, pp 763-769, issn 0920-3796, 7 p.Conference Paper

EU contribution to ITER CTA fuel cycle design and R&DMURDOCH, D; BEKRIS, N; BOISSIN, J.-C et al.Fusion engineering and design. 2003, Vol 69, Num 1-4, pp 45-49, issn 0920-3796, 5 p.Conference Paper

Recycling scheme and fuel cycle costs for twin BWRs reactorsRAMIREZ, José R; PERRY, R. T; ALONSO, Gustavo et al.Progress in nuclear energy (New series). 2009, Vol 51, Num 2, pp 303-306, issn 0149-1970, 4 p.Article

EU fuel cycle development priorities for ITERMURDOCH, D; CRISTESCU, I; DAY, C et al.Fusion engineering and design. 2007, Vol 82, Num 15-24, pp 2158-2163, issn 0920-3796, 6 p.Conference Paper

The inner deuterium/tritium fuel cycle of ITERGLUGLA, M; LÄSSER, R; DÖRR, L et al.Fusion engineering and design. 2003, Vol 69, Num 1-4, pp 39-43, issn 0920-3796, 5 p.Conference Paper

RAMI analysis for ITER fuel cycle systemOKAYAMA, K; VAN HOUTTE, D; SAGOT, F et al.Fusion engineering and design. 2011, Vol 86, Num 6-8, pp 598-601, issn 0920-3796, 4 p.Conference Paper

Wise: A new fuel cycle concept based on a mobile fuel reactorSLESSAREV, Igor; PALMIOTTI, G; SALVATORES, M et al.Nuclear technology. 2004, Vol 146, Num 3, pp 230-243, issn 0029-5450, 14 p.Article

Cycle du combustible nucléaire = Nuclear fuel cycleBERTEL, R. Evelyne.Techniques de l'ingénieur. Génie nucléaire. 1998, Vol BN2, Num BN3560, pp BN3560.1-BN3560.12, issn 1762-875XArticle

Développement et qualification d'un formulaire de calcul neutronique de criticité = Development and validation of a neutronic criticality calculation routeRoque, Bénédicte; Reuss, P.1994, 317 p.Thesis

Accountancy under typical operational strategies used in tritium processingAVENHAUS, R; SPANNAGEL, G.Kernforschungszentrum Karlsruhe. 1993, Num 5101, issn 0303-4003, p. 13Serial Issue

DESIGN OF THE SHIELDING OF THE MATERIALS TEST STATIONMUHRER, G; WILSON, M; KELSEY, Ch et al.Nuclear technology. 2009, Vol 168, Num 2, pp 497-501, issn 0029-5450, 5 p.Conference Paper

Nuclear proliferation-resistance and safeguards for future nuclear fuel cycleKUNO, Y; INOUE, N; SENZAKI, M et al.Journal of nuclear materials. 2009, Vol 385, Num 1, pp 153-156, issn 0022-3115, 4 p.Conference Paper

Tokamak D-T fusion neutron source requirements for closing the nuclear fuel cycleSTACEY, W. M.Nuclear fusion. 2007, Vol 47, Num 3, pp 217-221, issn 0029-5515, 5 p.Article

Transmutation of actinides using Z-pinch fusionCIPITI, B. B; WILSON, P. P. H; PHRUKSAROJANAKUN, P et al.Fusion science and technology. 2007, Vol 52, Num 3, pp 731-738, 8 p.Conference Paper

The nuclear fuel cycleCHAMBERLAIN, L. N.Energy Digest. 1991, Vol 20, Num 3, pp 4-8, issn 0367-1119Article

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