## Abstract In this study, we examined the growth of a spherical bubble in a limited amount of liquid by using a finite‐element‐based numerical simulation method. The bubble growth was assumed to be controlled by both momentum and mass transfer. A truncated power‐law constitutive equation was used
✦ LIBER ✦
Numerical simulation of bubble growth in expanding perlite
✍ Scribed by K. Zähringer; J.-P. Martin; J.-P. Petit
- Book ID
- 110367846
- Publisher
- Springer
- Year
- 2001
- Tongue
- English
- Weight
- 474 KB
- Volume
- 36
- Category
- Article
- ISSN
- 0022-2461
No coin nor oath required. For personal study only.
📜 SIMILAR VOLUMES
Numerical simulation of bubble growth in
✍
Xingming Xu; Guoqun Zhao; Huiping Li
📂
Article
📅
2009
🏛
John Wiley and Sons
🌐
English
⚖ 138 KB
👁 1 views
Numerical Simulation of Bubble Motion in
✍
John B. Mclaughlin
📂
Article
📅
1996
🏛
Elsevier Science
🌐
English
⚖ 272 KB
larger than a critical diameter move along an oscillatory This paper presents the results of numerical simulations for path. The oscillation may be either a zigzag or a helix. Saffbubble motion in water. The motion is axisymmetric and steady man found that, in filtered water, bubbles in the range 1.
Numerical Simulation of Bubble Dynamics
✍
Lin Pu; Huixiong Li; Xiao Lv; Jianfu Zhao; Tingkuan Chen; Yuqin Zhu
📂
Article
📅
2008
🏛
Springer Netherlands
🌐
English
⚖ 326 KB
Numerical simulation of aggregation in a
✍
F. Lesaffre; C. Tiret; R. Botet; R. Jullien
📂
Article
📅
1990
🏛
Elsevier Science
🌐
English
⚖ 175 KB
Numerical simulation of bubble-driven li
✍
Jinsong Hua; Chi-Hwa Wang
📂
Article
📅
2000
🏛
Elsevier Science
🌐
English
⚖ 619 KB
Numerical Simulation and Experimental Va
✍
A. Klipfel; M. Founti; K. Zähringer; J.P. Martin; J.P. Petit
📂
Article
📅
1998
🏛
Springer
🌐
English
⚖ 199 KB