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Cell model of nonisothermal gas absorption in gas-liquid bubbly media
T. Elperin,
A. Fominykh
Department of Mechanical Engineering
Research output
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Contribution to journal
›
Article
›
peer-review
8
Scopus citations
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Dive into the research topics of 'Cell model of nonisothermal gas absorption in gas-liquid bubbly media'. Together they form a unique fingerprint.
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Physics & Astronomy
cells
35%
liquids
35%
gases
33%
mass transfer
29%
heat transfer
25%
bubbles
25%
dissolved gases
22%
gas temperature
17%
temperature distribution
13%
vapor phases
13%
boundary conditions
11%
heat
10%
coefficients
8%
approximation
8%
interactions
6%
Engineering & Materials Science
Gas absorption
100%
Liquids
44%
Gases
37%
Mass transfer
23%
Periodic structures
17%
Heat transfer
17%
Hot Temperature
12%
Temperature distribution
10%
Boundary conditions
10%
Chemical Compounds
Heat Transfer
35%
Gas
34%
Bubble
34%
Mass Transfer
27%
Liquid
17%
Heat
12%
Diffusion
10%
Purity
8%
Time
5%