TY - GEN
T1 - AN INITIAL LOOK AT THE HEAT PIPE RESILIENCY TO REACTOR OPERATION
AU - Mehta, Vedant K.
AU - Corbisiero, Sebastian C.
AU - Rao, Dasari V.
N1 - Publisher Copyright:
© 2023 American Nuclear Society.
PY - 2023/5
Y1 - 2023/5
N2 - Several special purpose reactor designs are aiming to utilize heat pipes due to its inherently passive features allowing safe heat removal to the power conversion systems. There is insufficient data on heat pipe survivability in reactor environments, although heat-pipe failures are predicted to have low failure rates. In this paper, we perform a coupled neutronics and thermomechanics analyses for a 45 kWth HALEU fueled, hydride moderated homogenous design to evaluate the transient effects during both startup and a heatpipe-failure scenario. The heatpipe-failure study includes both a single failure case and a failure-propagation (cascading) case. While the model only evaluates a homogenous core, the approach could be applied to more complex models for any heat pipe cooled small reactor.
AB - Several special purpose reactor designs are aiming to utilize heat pipes due to its inherently passive features allowing safe heat removal to the power conversion systems. There is insufficient data on heat pipe survivability in reactor environments, although heat-pipe failures are predicted to have low failure rates. In this paper, we perform a coupled neutronics and thermomechanics analyses for a 45 kWth HALEU fueled, hydride moderated homogenous design to evaluate the transient effects during both startup and a heatpipe-failure scenario. The heatpipe-failure study includes both a single failure case and a failure-propagation (cascading) case. While the model only evaluates a homogenous core, the approach could be applied to more complex models for any heat pipe cooled small reactor.
UR - https://www.scopus.com/pages/publications/85207639494
U2 - 10.13182/NETS23-41669
DO - 10.13182/NETS23-41669
M3 - Conference contribution
AN - SCOPUS:85207639494
T3 - Proceedings of Nuclear and Emerging Technologies for Space, NETS 2023
SP - 533
EP - 539
BT - Proceedings of Nuclear and Emerging Technologies for Space, NETS 2023
PB - American Nuclear Society
T2 - 2023 Nuclear and Emerging Technologies for Space, NETS 2023
Y2 - 7 May 2023 through 11 May 2023
ER -