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AbstractAbstract
[en] When a superconducting magnet goes normal, resistive heating in the conductor evaporates surrounding LHe, which must be vented. The nature and speed at which the magnet goes normal and He is vented are not subject to rigorous analysis. This paper presents vent data from an existing magnet. An approximate mathematical model is derived and fitted to the data to permit scaling of vent requirements to larger size magnets. The worst case models of the vent employed in Mirror Fusion Test Facility (MFTF) cryogenic system design are also presented
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1 Nov 1979; 4 p; 8. symposium on engineering problems of fusion research; San Francisco, CA, USA; 13 - 16 Nov 1979; CONF-791102--29; Available from NTIS., PC A02/MF A01
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