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- W1645266752 abstract "In this study, the natural ventilation pressure resulting from the large altitude difference which is a characteristic of high radioactive waste repository and the caloric value of the heat emitted by wastes was calculated and based on the results, natural ventilation quantities were calculated. A high radioactive waste repository can be considered as being operated through closed cycle thermodynamic processes similar to those of thermal engines. The heat produced by the heating of high radioactive wastes in the underground repository is added to the surrounding air, and the air goes up through the upcast vertical shaft due to the added heat while working on its surroundings. Part of the heat added by the work done by the air can be temporarily changed into mechanical energy to promote the air flow. Therefore, if a sustained and powerful heat source exists in the repository, the heat source will naturally enable continued cyclic flows of air. Based on this assumption, the quantity of natural ventilation made during the disposal of high radioactive wastes in a deep geological layer was mathematically calculated and based on the results, natural ventilation pressure of 73~173Pa made by the stack effect was identified along with the resultant natural ventilation quantity of 92~143m 3 /s. The result of an analysis by CFD was 82~143m 3 /s which was very similar to the results obtained by the mathematical method." @default.
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- W1645266752 date "2011-01-01" @default.
- W1645266752 modified "2023-09-25" @default.
- W1645266752 title "A Study on Natural Ventilation by the Caloric Values of HLW in the Deep Geological Repository" @default.
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- W1645266752 doi "https://doi.org/10.7474/tus.2011.21.6.518" @default.
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