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Pearson, K.G.; Loveless, J.
UKAEA Reactor Group, Winfrith. Atomic Energy Establishment1977
UKAEA Reactor Group, Winfrith. Atomic Energy Establishment1977
AbstractAbstract
[en] Numerical solutions of the rewetting equations are presented which show the effect of filler material and gas gap on the rate of rewetting of an overheated fuel pin. It is shown that taking the presence of the fuel into account can lead to a large reduction in the calculated rewetting speed compared with a calculation which neglects the presence of fuel. The effect is most marked in conditions where rewetting speeds tend to be already low, such as at high pin temperatures and low ambient pressure. A comparison is made between the predictions of the present method and experimental data obtained on zircaloy and stainless steel pins filled with magnesia and with boron nitride. In all cases filling the pins produced a large reduction in rewetting speed and the agreement between the calculated and measured effect was encouraging. It is concluded that the presence of the UO2 pellet filling should be taken into account when calculating rewetting speeds in safety assessments. (author)
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Mar 1977; 14 p
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Report
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ACTINIDE COMPOUNDS, ALKALINE EARTH METAL COMPOUNDS, ALLOYS, BORON COMPOUNDS, CARBON ADDITIONS, CHALCOGENIDES, CHROMIUM ALLOYS, CORROSION RESISTANT ALLOYS, ENERGY SOURCES, ENERGY TRANSFER, FUEL ELEMENTS, FUELS, IRON ALLOYS, IRON BASE ALLOYS, MAGNESIUM COMPOUNDS, NITRIDES, NITROGEN COMPOUNDS, OXIDES, OXYGEN COMPOUNDS, REACTOR COMPONENTS, REACTOR MATERIALS, SAFETY, STEELS, TIN ALLOYS, TRANSITION ELEMENT ALLOYS, URANIUM COMPOUNDS, URANIUM OXIDES, ZIRCONIUM ALLOYS, ZIRCONIUM BASE ALLOYS
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