Assessment of the analysis capability for core-wide PWR pellet-clad interaction screening of Watts Bar Unit 1

Author:

Capps Nathan,Stimpson Shane,Clarno Kevin,Wirth Brian D.,Rashid Joe

Funder

U.S. Department of Energy

Office of Science of the US Department of Energy

Oak Ridge National Laboratory

US Department of Energy

Publisher

Elsevier BV

Subject

Mechanical Engineering,Waste Management and Disposal,Safety, Risk, Reliability and Quality,General Materials Science,Nuclear Energy and Engineering,Nuclear and High Energy Physics

Reference25 articles.

1. Aleshin, Y., Beard, C., Mangham, G., Mitchell, D., Malek, E., Young, M., 2010. The effect of pellet and local power variations on PCI margin. In: Proceedings of Top Fuel 2010, September 26–29, 2010, Orlando, FL, USA, Paper 041.

2. CTF: A Thermal Hydraulic Sub-channel Code for LWR Transient Analyses, User’s Manual;Avramova,2009

3. Capps, N. et.al, 2015. L2.FMC.P11.01 Demonstrate 3D PCI analysis with BISON-CASL for PCI fuel failure in a commercial power reactor. L2.FMC.P11.01, September 2015.

4. Clarno, K.T. et al., 2015. High fidelity modeling of pellet-clad interaction using the CASL virtual environment for reactor applications. In: Proceedings of the ANS Joint International Conference on Mathematics and Computation (M&C 2015), Supercomputing in Nuclear Applications (SNA) and the Monte Carlo (MC) Method. Nashville, TN, USA (2015).

5. Clarno, K.T. et al., 2015. High fidelity modeling of pellet-clad interaction using the CASL virtual environment for reactor applications. In: Proceedings of the ANS Joint International Conference on Mathematics and Computation (M&C 2015), Supercomputing in Nuclear Applications (SNA) and the Monte Carlo (MC) Method. Nashville, TN, USA (2015).

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