At the Heat-Pipe Limit – Coupled Modelling and Operating-Limit Assessment of a Heat-Pipe-Cooled Microreactor
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Publicerad
Författare
Typ
Examensarbete för masterexamen
Master's Thesis
Master's Thesis
Program
Modellbyggare
Tidskriftstitel
ISSN
Volymtitel
Utgivare
Sammanfattning
Heat pipes are efficient transporters of heat and are currently being considered in
new microreactor designs. To support efforts in understanding the behaviour and
limitations associated with using heat pipes as primary heat removal components
in microreactors, a reduced coupled model of a fuel assembly is developed in this
thesis. The model is based on publicly available information on the Westinghouse
eVinci reactor, a prominent design currently under development. The reduced model
functions as an effective one-fuel-pin–one-heat-pipe model of a fuel assembly in an
eVinci-like reactor and couples one-dimensional neutronics, two-dimensional heat
transfer, and one-dimensional fluid flow. Applying the model to an estimated reactor
configuration suggests that an eVinci-like reactor operating at the marketed
power output is within the heat-pipe limits considered in this thesis. The results
also indicate that the model complexity can be further reduced in normal operating
conditions, and partly in limiting conditions. Fixed-temperature approximations for
the neutronic data and the thermal conductivities have a small effect on the neutronic
effective multiplication factor, and do not alter the temperature and neutronflux
distributions significantly. Furthermore, approximating the heat-pipe vapour as
isothermal is acceptable under normal operating conditions, but breaks down near
the sonic limit.
Beskrivning
Ämne/nyckelord
microreactor, heat pipe reactor, heat pipe, eVinci, reactor physics, nuclear reactor
