Optimum Discharge Burnup and Cycle Length for PWRs

Author:

Secker Jeffrey R.1,Johansen Baard J.1,Stucker David L.1,Ozer Odelli2,Ivanov Kostadin3,Yilmaz Serkan3,Young E. H.4

Affiliation:

1. Westinghouse Electric Company, LLC, 4350 Northern Pike Monroeville, Pennsylvania 15146-2886

2. Electric Power Research Institute, 3412 Hillview Avenue Palo Alto, California 94304-1395

3. The Pennsylvania State University 230 Reber Building, University Park, Pennsylvania 16802

4. Exelon Generation Company, Exelon Nuclear 4300 Winfield Road, Warrenville, Illinois 60555

Publisher

Informa UK Limited

Subject

Condensed Matter Physics,Nuclear Energy and Engineering,Nuclear and High Energy Physics

Reference8 articles.

1. “LWR Fuel-Cycle Costs as Function of Burnup,” Report NP-3788, Electric Power Research Institute (1984).

2. “The Economics of the Nuclear Fuel Cycle, Annex A-9— Nuclear Fuel Costs,” Organization for Economic Cooperation and Development/Nuclear Energy Agency (1994).

3. “Optimum Discharge Burnup for Nuclear Fuel: Comprehensive Study of Duke Power’s Reactors,” TR-112571, Electric Power Research Institute (1999).

4. “Optimum Cycle Length and Discharge Burnup for Nuclear Fuel—Phase I: Results Achievable Within the 5% Enrichment Limit,” Report 1003133, Electric Power Research Institute (2001).

5. “Optimum Cycle Length and Discharge Burnup for Nuclear Fuel—Phase II: Results Achievable with Enrichments Greater than 5 w/o,” Report 1003217, Electric Power Research Institute (2002).

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