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A ONE-DIMENSIONAL COMPUTATION METHOD FOR PREDICTING THE ASYMPTOTIC HEAT TRANSFER BEHAVIOUR OF SODIUM-SATURATED FUEL PARTICLE BEDS WITH TOP AND BOTTOM COOLINGNIJSING R; SCHWALM D.1981; NUCL. ENG. DES.; ISSN 0029-5493; NLD; DA. 1981; VOL. 66; NO 2; PP. 151-170; BIBL. 26 REF.Article

ASSEMBLAGES DE COMBUSTIBLE POUR REACTEURS RAPIDES REFROIDIS AU GAZYELLOWLEES JM; CHIARELLI G; LIBIN B et al.1972; ENERG. NUCL.; FR.; DA. 1972; VOL. 14; NO 3; PP. 161-167; ABS. ANGL. ALLEM. ESP.; BIBL. 15 REF.Serial Issue

Scaling relationships for fluidisation : the generalised particle bed modelDOSCOLO, P. U; DI FELICE, R; GIBILARO, L. G et al.Chemical engineering science. 1990, Vol 45, Num 6, pp 1647-1651, issn 0009-2509Article

Dryout heat fluxes in particulate beds heated through the baseJONES, S. W; EPSTEIN, M; BANKOFF, S. G et al.Journal of heat transfer. 1984, Vol 106, Num 1, pp 176-183, issn 0022-1481Article

The reflood time as a determination for dryoutSOMERTON, C. W; CATTON, I.Journal of heat transfer. 1984, Vol 106, Num 3, pp 656-658, issn 0022-1481Article

A PARTICLE BED DRYOUT MODEL BASED ON FLOODINGOSTENSEN RW; LIPINSKI RJ.1981; NUCL. SCI. ENG.; ISSN 0029-5639; USA; DA. 1981; VOL. 79; NO 1; PP. 110-113; BIBL. 18 REF.Article

Cooling of debris bedsBARLEON, L; THOMAUSKE, K; WERLE, H et al.Nuclear technology. 1984, Vol 65, Num 1, pp 67-86, issn 0029-5450Article

Optimization of thermal energy storage in packed columnsMAALIOU, O; MCCOY, B. J.Solar energy. 1985, Vol 34, Num 1, pp 35-41, issn 0038-092XArticle

Dryout of an inductively heated bed of steel particles with subcooled flow from beneath the bedTSAI, F. P; JAKOBSSON, J; CATTON, I et al.Nuclear technology. 1984, Vol 65, Num 1, pp 10-15, issn 0029-5450Article

Derivation of a dryout model in a particle debris bed with the drift-flux approachSOON HEUNG CHANG; SEONG HO KIM.Nuclear science and engineering. 1985, Vol 91, Num 4, pp 404-413, issn 0029-5639Article

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