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- W98576009 abstract "The feasibility of a passive containment concept was investigated for an ITER-like fusion experimental reactor. The concept utilizes the large building volume, characteristic of a fusion facility, to dissipate large energy releases, which could occur during a major accident in a water cooling system. As the torus building volume is subdivided into smaller volumes, a number of critical interconnections between volumes are required for this concept to work. These interconnections are achieved through panels that blow out at preset pressure differentials. The concept was analyzed under severe conditions such as a double-ended guillotine break of the largest pipe in the cooling system. Furthermore, the cooling system was assumed to be operating at high temperature and pressure (285°C and 10 Mpa). The objective of the analysis was to determine the strength of the blow-out panels and the size of the inter-zone openings required to maintain the pressure in any zone below 30 kPa and the differential pressure across any two zones below 15 kPa. The results indicate that an inter- zone area of about 40 m2, for the cooling system equipment rooms, and 10 m2 everywhere else would be sufficient to achieve the above targets. Given the size of the various zone volumes, these requirements are quite modest. Hence, high pressure and temperature cooling systems for an ITER-like fusion reactor can be used while maintaining a truly passive safety approach to containment design." @default.
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- W98576009 date "1993-01-01" @default.
- W98576009 modified "2023-09-27" @default.
- W98576009 title "CONTAINMENT PRESSURE CALCULATIONS FOLLOWING A LOCA IN A HIGH PRESSURE/TEMPERATURE FUSION REACTOR COOLING SYSTEM" @default.
- W98576009 doi "https://doi.org/10.1016/b978-0-444-89995-8.50350-7" @default.
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