HEAT TRANSFER FROM AN IMMERSED FIXED SILVER SPHERE TO A GAS FLUIDIZED BED OF VERY SMALL PARTICLES
被引:4
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作者:
Prins, Wolter
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机构:
Univ Ghent, Fac Biosci Engn, Ghent, BelgiumUniv Ghent, Fac Biosci Engn, Ghent, Belgium
Prins, Wolter
[1
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Maziarka, Przemyslaw
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机构:
Univ Ghent, Fac Biosci Engn, Ghent, BelgiumUniv Ghent, Fac Biosci Engn, Ghent, Belgium
Maziarka, Przemyslaw
[1
]
De Smedt, Jonas
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机构:
Univ Ghent, Fac Biosci Engn, Ghent, BelgiumUniv Ghent, Fac Biosci Engn, Ghent, Belgium
De Smedt, Jonas
[1
]
Ronsse, Frederik
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机构:
Univ Ghent, Fac Biosci Engn, Ghent, BelgiumUniv Ghent, Fac Biosci Engn, Ghent, Belgium
Ronsse, Frederik
[1
]
Harmsen, Jan
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机构:
Harmsen Consultancy Bv, Nieuwerkerk Aan Ijssel, NetherlandsUniv Ghent, Fac Biosci Engn, Ghent, Belgium
Harmsen, Jan
[2
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Van Swaaij, Wim
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机构:
Univ Twente, Fac Sci & Technol, Enschede, NetherlandsUniv Ghent, Fac Biosci Engn, Ghent, Belgium
Van Swaaij, Wim
[3
]
机构:
[1] Univ Ghent, Fac Biosci Engn, Ghent, Belgium
[2] Harmsen Consultancy Bv, Nieuwerkerk Aan Ijssel, Netherlands
[3] Univ Twente, Fac Sci & Technol, Enschede, Netherlands
来源:
THERMAL SCIENCE
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2019年
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23卷
关键词:
fluidization;
heat transfer;
heat transfer coefficient;
immersed sphere;
fine particles;
fluid catalytic cracking fines;
air;
helium;
TRANSFER COEFFICIENT;
MASS-TRANSFER;
SURFACE;
D O I:
10.2298/TSCI180928175P
中图分类号:
O414.1 [热力学];
学科分类号:
摘要:
Results of unique heat transfer measurement in beds of fine, cracking catalyst particles, fluidized by air or helium gas, are compared with predictions from a theoretical model presented in the literature, and also with an earlier established empirical correlation. Moreover, the results have been related to dense phase flow conditions around a silver heat transfer probe by a simple turbulence model. A maximum heat transfer coefficient of h = 2300 W/m(2)K has been measured in a bed of 14 mu m (average diameter) particles, fluidized by helium gas. The data collected, and the model developed, can be used for the design of heat transfer tubes in fluidized beds of fine particles as for instance in fluid catalytic cracking (FCC) of crude oil heavy residues. The FCC is one of the most important conversion processes in the petroleum refineries.
机构:
Northeast Elect Power Univ, Coll Energy Resource & Power Engn, Jilin 132012, Jilin, Peoples R ChinaNortheast Elect Power Univ, Coll Energy Resource & Power Engn, Jilin 132012, Jilin, Peoples R China
Yang, Ning
Zhou, Yunlong
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机构:
Northeast Elect Power Univ, Coll Energy Resource & Power Engn, Jilin 132012, Jilin, Peoples R ChinaNortheast Elect Power Univ, Coll Energy Resource & Power Engn, Jilin 132012, Jilin, Peoples R China
Zhou, Yunlong
Qi, Tianyu
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机构:
Tsinghua Univ, Inst Unclear & New Energy Technol, Beijing 100084, Peoples R ChinaNortheast Elect Power Univ, Coll Energy Resource & Power Engn, Jilin 132012, Jilin, Peoples R China
机构:
SK Innovat, Catalyst & Proc R&D Ctr, Taejon 305712, South KoreaSK Innovat, Catalyst & Proc R&D Ctr, Taejon 305712, South Korea
Kim, Sung Won
Kim, Sang Done
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机构:
Korea Adv Inst Sci & Technol, Dept Chem & Biomol Engn, Taejon 305701, South Korea
Korea Adv Inst Sci & Technol, Energy & Environm Res Ctr, Taejon 305701, South KoreaSK Innovat, Catalyst & Proc R&D Ctr, Taejon 305712, South Korea