Numerical calculation of bubble growth in nucleate boiling from inception through departure
Description
The relative contributions of the fundamental mechanisms accounting for the enhanced heat transfer in nucleate boiling are difficult to quantify analytically or experimentally. A comprehensive model was developed that permits some accurate insights into this problem. An essential feature involved the numerical mapping of the complicated geometry to a plane where the bubble and wall boundaries lie along constant coordinate lines. The results show that microlayer evaporation accounts for 87% of the enhanced wall heat transfer during saturated boiling of water at 1 atm and 8.5 K wall superheat. In contrast, enhanced convective effects were essentially non-existent during growth and minimal following departure. The analysis predicts an extremely nonuniform thermal boundary layer around the bubble, and shows that the wall thermal boundary layer regenerates almost immediately following departure
Additional details
Publishing Information
- Publisher
- American Society of Mechanical Engineers.
- Imprint Place
- New York, NY (USA)
- Imprint Title
- Numerical methods in heat transfer
- Journal Page Range
- p. 25-30.
Conference
- Title
- ASME winter meeting.
- Dates
- 13-18 Dec 1987.
- Place
- Boston, MA (USA).
INIS
- Country of Publication
- United States
- Country of Input or Organization
- United States
- INIS RN
- 19105887
- Subject category
- S42: ENGINEERING;
- Resource subtype / Literary indicator
- Conference
- Descriptors DEI
- BOUNDARY CONDITIONS; BUBBLE GROWTH; EVAPORATION; HEAT TRANSFER; MATHEMATICAL MODELS; NUCLEATE BOILING; SUPERHEATING; THERMODYNAMICS; WATER
- Descriptors DEC
- BOILING; ENERGY TRANSFER; HEATING; HYDROGEN COMPOUNDS; OXYGEN COMPOUNDS; PHASE TRANSFORMATIONS; POLAR SOLVENTS; SOLVENTS