JOURNAL ARTICLE

Mechanisms of Steady‐State Nucleate Pool Boiling in Microgravity

Ho Sung Lee

Year: 2002 Journal:   Annals of the New York Academy of Sciences Vol: 974 (1)Pages: 447-462   Publisher: Wiley

Abstract

A bstract : Research on nucleate pool boiling in microgravity using R‐113 as a working fluid was conducted using a five‐second drop tower and five space flights at a/g ∼ 10 −4 . A 19 × 38‐mm flat gold film heater was used that allowed cine camera viewing both from the side and the bottom of the heater. It was concluded that for both subcooled and saturated liquids long‐term steady‐state pool boiling can take place in reduced gravity, but the effectiveness of the boiling heat transfer appears to depend on the heater geometry and on the size and the properties of fluids. Heat transfer is enhanced at lower heat flux levels and the CHF increases as the subcooling increases. It was found that several mechanisms are responsible for the steady‐state nucleate pool boiling in the absence of buoyancy. The mechanisms considered here are defined and summarized as bubble removal, bubble coalescence, thermocapillary flow, bubble migration, and latent heat transport.

Keywords:
Subcooling Nucleate boiling Boiling Bubble Buoyancy Thermodynamics Heat transfer Steady state (chemistry) Heat flux Mechanics Coalescence (physics) Drop (telecommunication) Nucleation Critical heat flux Materials science Chemistry Physics Mechanical engineering

Metrics

5
Cited By
0.00
FWCI (Field Weighted Citation Impact)
18
Refs
0.23
Citation Normalized Percentile
Is in top 1%
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Citation History

Topics

Heat Transfer and Boiling Studies
Physical Sciences →  Engineering →  Mechanical Engineering
Spacecraft and Cryogenic Technologies
Physical Sciences →  Engineering →  Aerospace Engineering
Fluid Dynamics and Heat Transfer
Physical Sciences →  Engineering →  Computational Mechanics

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