Analyses are presented οη hypothetical accidents in NET/ITER involving: -air ingress in the graphite-coated plasma chamber through a breach in the vacuum vessel (LOVA); -loss-of-coolant inside the vacuum vessel with water ingress in the plasma chamber (inside LOCA); -loss-of-coolant outside the vacuum vessel (outside LOCA); -loss-of-power with the worst case conditions of absence of any cooling by natural convection (total LOCA) , and with natural convection flow (total LOFA). Ιn this paper the modeling of these accidents and important results are shown.
Loss-of-vacuum, loss-of-coolant, and loss-of-flow accident analysis for NET ITER / Andritsos, F.; Caouris, Y. G.; Rocco, P.; Zucchetti, Massimo; Klippel, H. T.; Komen, E.; Boogaard, J. P. A.; van den Zylberstejn, T.; Drimille, E.; Mazille, F.. - STAMPA. - (1990), pp. 1477-1481. (Intervento presentato al convegno 16th Symposium οn Fusion TechnoIogy, London, U.K, 3-7 September 1990 tenutosi a London (UK) nel 3-7 September 1990).
Loss-of-vacuum, loss-of-coolant, and loss-of-flow accident analysis for NET ITER
ZUCCHETTI, MASSIMO;
1990
Abstract
Analyses are presented οη hypothetical accidents in NET/ITER involving: -air ingress in the graphite-coated plasma chamber through a breach in the vacuum vessel (LOVA); -loss-of-coolant inside the vacuum vessel with water ingress in the plasma chamber (inside LOCA); -loss-of-coolant outside the vacuum vessel (outside LOCA); -loss-of-power with the worst case conditions of absence of any cooling by natural convection (total LOCA) , and with natural convection flow (total LOFA). Ιn this paper the modeling of these accidents and important results are shown.Pubblicazioni consigliate
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https://hdl.handle.net/11583/2629393
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