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- W107109831 abstract "In this paper, a method of determination of temperature and thermal stress distributions in a fuel element of a new gas-cooled, thermal spectrum particle bed reactor (GCT-PBR) was derived. It was capable of predicting failure and giving feedback on dimension design. To describe the fuel element, a three-layer conductive porous cylinder with infinite height and different materials was considered. A linear model of heat transfer in a one-dimensional porous medium with uniform internal energy source in cylindrical coordinate was first developed. Only steady state was considered. In thermal stress analysis, the thermal and mechanical properties of the solid phase and coolant were taken as constants, which were independent of temperature and time. Failure analysis was conducted based on von Mises criteria. The effect of geometry on thermal stress was investigated. It was shown that hot frit experienced the highest thermal stress and within design requirement, a thinner hot frit and a thicker cold frit would give a better performance." @default.
- W107109831 created "2016-06-24" @default.
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- W107109831 date "2013-09-24" @default.
- W107109831 modified "2023-09-27" @default.
- W107109831 title "Thermal stress analysis of fuel element in particle bed reactor" @default.
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