Experimental study on single- and two-phase flow behaviors within porous particle beds

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초록

In this study, the pressure drop behavior of single- and two-phase flows of air and water through the porous beds filled with uniform and non-uniform sized spherical particles was examined. The pressure drop data in the single-phase flow experiments for the uniform particle beds agreed well with the original Ergun correlation. The results from the two-phase flow experiments were analyzed using numerical results based on three types of previous models. In the experiments for the uniform particle beds, the data on the two-phase pressure drop clearly showed the effect of the flow regime transition with a variation in the gas flow rate under stagnant liquid condition. The numerical analyses indicated that the predictability of the previous models for the experimental data relied mainly on the sub-models of the flow regime transitions and interfacial drag. In the experiments for the non-uniform particle beds, the two-phase pressure loss could be predicted well with numerical calculations based on the effective particle diameter. However, the previous models failed to accurately predict the counter-current flooding limit observed in the experiments. Finally, we propose a relation of falling liquid velocity into the particle bed by gravity to appropriately simulate the CCFL phenomenon. © 2022 Korean Nuclear Society

키워드

Counter-current flooding limitPorous particle bedSevere accidentTwo-phase flowDRYOUT HEAT-FLUXPACKED-BEDSPRESSURE-DROPMODELDIAMETERREGIMES
제목
Experimental study on single- and two-phase flow behaviors within porous particle beds
저자
Oh, J.S.An, S.M.Kim, H.Y.Kim, D.E.
DOI
10.1016/j.net.2022.10.044
발행일
2023-03
유형
Article
저널명
Nuclear Engineering and Technology
55
3
페이지
1105 ~ 1117

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