TY - GEN
T1 - Pellet Cladding Interaction In-Reactor Ramp Testing in a World without the Halden Boiling Water Reactor
AU - Woolstenhulme, Nicolas
AU - Durtschi, Brian
AU - Folsom, Charles
AU - Holcombe, Scott
AU - Jensen, Colby
AU - Kamerman, David
AU - Labossiere-Hickman, Travis
AU - Oldham, Nate
AU - Wachs, Daniel
N1 - Publisher Copyright:
© 2022 Proceedings of TopFuel 2022 Light Water Reactor Fuel Performance Conference. All Rights Reserved.
PY - 2022
Y1 - 2022
N2 - One of the most crucial performance areas for fuel rods in water cooled nuclear power plants is interaction between cladding tubes and fuel pellets. Experimental programs in test reactors have provided key data to help fuel developers and plant operators understand Pellet Cladding Interaction (PCI) phenomena and optimize their strategies for reliable fuel performance. Approximately 50 years of “ramp” testing programs, where the fission heating rate is deliberately manipulated in test rods, have been performed in a handful of test reactors to reveal and understand PCI behaviors such as iodine-assisted stress corrosion cracking. Unfortunately, the test reactors most engaged in this type of work have all been retired over the years up to the recent and unexpected closure of the Halden Boiling Water Reactor (HBWR) which effectively caused a hiatus in PCI ramp testing programs. The need for ramp testing is crucial at this time to enable refined understanding as more plants consider implementing flexible operations, increased fuel rod burnup limits, and new fuel technologies with enhanced accident tolerance. This paper reviews some of the key PCI phenomena that must be addressed with in-pile testing and surveys past test reactor's methods for achieving the needed conditions. A strategic approach is then presented using test reactors and complimentary facilities which are still available today at the Idaho National Laboratory (INL). Near term data opportunities are put forth along with capability development strategies that will ensure future longevity in this field of research.
AB - One of the most crucial performance areas for fuel rods in water cooled nuclear power plants is interaction between cladding tubes and fuel pellets. Experimental programs in test reactors have provided key data to help fuel developers and plant operators understand Pellet Cladding Interaction (PCI) phenomena and optimize their strategies for reliable fuel performance. Approximately 50 years of “ramp” testing programs, where the fission heating rate is deliberately manipulated in test rods, have been performed in a handful of test reactors to reveal and understand PCI behaviors such as iodine-assisted stress corrosion cracking. Unfortunately, the test reactors most engaged in this type of work have all been retired over the years up to the recent and unexpected closure of the Halden Boiling Water Reactor (HBWR) which effectively caused a hiatus in PCI ramp testing programs. The need for ramp testing is crucial at this time to enable refined understanding as more plants consider implementing flexible operations, increased fuel rod burnup limits, and new fuel technologies with enhanced accident tolerance. This paper reviews some of the key PCI phenomena that must be addressed with in-pile testing and surveys past test reactor's methods for achieving the needed conditions. A strategic approach is then presented using test reactors and complimentary facilities which are still available today at the Idaho National Laboratory (INL). Near term data opportunities are put forth along with capability development strategies that will ensure future longevity in this field of research.
UR - https://www.scopus.com/pages/publications/85180621831
U2 - 10.13182/TopFuel22-38878
DO - 10.13182/TopFuel22-38878
M3 - Conference contribution
AN - SCOPUS:85180621831
T3 - Proceedings of TopFuel 2022 Light Water Reactor Fuel Performance Conference
SP - 662
EP - 670
BT - Proceedings of TopFuel 2022 Light Water Reactor Fuel Performance Conference
PB - American Nuclear Society
T2 - TopFuel 2022 Light Water Reactor Fuel Performance Conference
Y2 - 9 October 2022 through 13 October 2022
ER -