TY - GEN
T1 - Modelling Nuclear Thermal Propulsion Reactor Expander Cycle Startup Transients
AU - Charlot, Lise
AU - Schunert, Sebastian
AU - Labouré, Vincent
AU - DeHart, Mark
N1 - Publisher Copyright:
© 2023 American Nuclear Society.
PY - 2023/5/11
Y1 - 2023/5/11
N2 - As the interest in nuclear thermal propulsion grows, the need for high fidelity and comprehensive models of the system increases. An expander cycle model was developed using RELAP-7 for the thermal-hydraulic performance and Griffin to provide the power level using a point kinetics approximation, for a reference NTP system. The tank and pump are approximated using boundary conditions. Flow is split between the moderator cooling channels flow path and the regenerative cooling/reflector cooling channels flow path. The flow recombines before entering the turbine and the fuel cooling channels. The turbine pressure ratio is maintained at 1.44 using a PID controller. A startup transient was simulated and shows the capability of the model to run from low temperature and pressures to nominal conditions.
AB - As the interest in nuclear thermal propulsion grows, the need for high fidelity and comprehensive models of the system increases. An expander cycle model was developed using RELAP-7 for the thermal-hydraulic performance and Griffin to provide the power level using a point kinetics approximation, for a reference NTP system. The tank and pump are approximated using boundary conditions. Flow is split between the moderator cooling channels flow path and the regenerative cooling/reflector cooling channels flow path. The flow recombines before entering the turbine and the fuel cooling channels. The turbine pressure ratio is maintained at 1.44 using a PID controller. A startup transient was simulated and shows the capability of the model to run from low temperature and pressures to nominal conditions.
UR - https://www.scopus.com/pages/publications/85207637068
UR - https://www.mendeley.com/catalogue/4931176b-de3a-3ccd-b5d1-82d1176a9fc6/
U2 - 10.13182/NETS23-41888
DO - 10.13182/NETS23-41888
M3 - Conference contribution
T3 - Proceedings of Nuclear and Emerging Technologies for Space, NETS 2023
SP - 233
EP - 236
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 -