Principal heat transfer mechanisms in a fluidized bed have been classified into three categories, i.e. solid convection, gas convection and radiation. Among these mechanisms, the solid convection is a dominant mechanism in the bubbling fluidized bed. This solid convection is substantially caused by
โฆ LIBER โฆ
Void fraction profile in tube-banks of a simulated fluidized-bed heat exchanger
โ Scribed by Mamoru Ozawa; Hisashi Umekawa; Takeshi Matsuda; Nobuyuki Takenaka; Akira Tsuruno; Masahito Matsubayashi
- Publisher
- Elsevier Science
- Year
- 1996
- Tongue
- English
- Weight
- 252 KB
- Volume
- 377
- Category
- Article
- ISSN
- 0168-9002
No coin nor oath required. For personal study only.
๐ SIMILAR VOLUMES
Heat transfer and flow characteristics a
โ
Ryosuke Honda; Hisashi Umekawa; Mamoru Ozawa
๐
Article
๐
2009
๐
Elsevier Science
๐
English
โ 434 KB
Heat transfer and pressure loss of a ver
โ
Shigenao Maruyama; Toshio Aihara; Yoshiteru Tanaka; Keisuke Kasahara
๐
Article
๐
1988
๐
Elsevier Science
๐
English
โ 615 KB
IIExperiments were carried out on heat transfer and pressure-loss characteristics of a low-pressure-loss fluidized-bed heat exchanger with an extremely small static bed height of glass beads. This heat exchanger was composed of a tube bank in a staggered arrangement and a multislit distributor desig
Heat transfer from a bank of immersed ho
โ
S.C Saxena
๐
Article
๐
1979
๐
Elsevier Science
โ 153 KB
Bed-to-tube heat exchange coefficients i
โ
Enrico Sciubba
๐
Article
๐
1986
๐
Elsevier Science
๐
English
โ 340 KB
Effect of an immersed tube-bank in a gas
โ
Wahab Mojtahedi
๐
Article
๐
1987
๐
Elsevier Science
๐
English
โ 553 KB
Effect of void volume and prandtl modulu
โ
Joel Weisman
๐
Article
๐
1955
๐
American Institute of Chemical Engineers
๐
English
โ 639 KB