TY - JOUR
T1 - Experimental Study of Convective Heat Transfer in Grille-sphere Composite Structured Packed Bed
AU - Wang, Jingyu
AU - Guo, Qing
AU - Yang, Jian
AU - Liu, Yan
AU - Wang, Qiuwang
N1 - Publisher Copyright:
© 2017 Published by Elsevier Ltd.
PY - 2017
Y1 - 2017
N2 - Randomly packed beds are widely used in practice due to their low cost and ease of use, however, the pressure drops in such packed beds are usually high. Compared with randomly packed beds, structured packed beds have a relatively lower pressure drop, while the heat transfer is weakened, and their packing form is hard to achieve. In the present paper, a grille-sphere composite structured packed bed (GSCSPB) is designed and the pressure drop together with the heat transfer in GSCSPB is experimentally investigated by using the naphthalene sublimation technique. Firstly, it is found that, the pressure drop in GSCSPB is a little higher than that of simple cubic (SC) packing and is much lower than that of randomly packed bed. Secondly, it shows that the particle-to-fluid heat transfer coefficient (hsf) in GSCSPB would be improved by 94% of SC packing, and can be 76% of that in randomly packed bed. That shows a highest overall heat transfer performance of GSCSPB. Finally, it reveals that the grille-to-fluid heat transfer coefficient (hgf) in GSCSPB is 1.05-1.23 times than hsf in GSCSPB, which indicates a huge potential for the heat transfer capacity in GSCSPB.
AB - Randomly packed beds are widely used in practice due to their low cost and ease of use, however, the pressure drops in such packed beds are usually high. Compared with randomly packed beds, structured packed beds have a relatively lower pressure drop, while the heat transfer is weakened, and their packing form is hard to achieve. In the present paper, a grille-sphere composite structured packed bed (GSCSPB) is designed and the pressure drop together with the heat transfer in GSCSPB is experimentally investigated by using the naphthalene sublimation technique. Firstly, it is found that, the pressure drop in GSCSPB is a little higher than that of simple cubic (SC) packing and is much lower than that of randomly packed bed. Secondly, it shows that the particle-to-fluid heat transfer coefficient (hsf) in GSCSPB would be improved by 94% of SC packing, and can be 76% of that in randomly packed bed. That shows a highest overall heat transfer performance of GSCSPB. Finally, it reveals that the grille-to-fluid heat transfer coefficient (hgf) in GSCSPB is 1.05-1.23 times than hsf in GSCSPB, which indicates a huge potential for the heat transfer capacity in GSCSPB.
KW - Experimental study
KW - Grille-Sphere composite structured packed bed
KW - Heat transfer
KW - Naphthalene sublimation
UR - https://www.scopus.com/pages/publications/85020701576
U2 - 10.1016/j.egypro.2017.03.943
DO - 10.1016/j.egypro.2017.03.943
M3 - 会议文章
AN - SCOPUS:85020701576
SN - 1876-6102
VL - 105
SP - 4782
EP - 4787
JO - Energy Procedia
JF - Energy Procedia
T2 - 8th International Conference on Applied Energy, ICAE 2016
Y2 - 8 October 2016 through 11 October 2016
ER -