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Journal ArticleDOI

Transient Pool Boiling Heat Transfer—Part 2: Boiling Heat Transfer and Burnout

Akira Sakurai, +1 more
- 01 Nov 1977 - 
- Vol. 99, Iss: 4, pp 554-560
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This article is published in Journal of Heat Transfer-transactions of The Asme.The article was published on 1977-11-01. It has received 54 citations till now. The article focuses on the topics: Nucleate boiling & Boiling.

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Journal ArticleDOI

Boiling heat transfer

TL;DR: In this paper, a review examines recent advances made in predicting boiling heat fluxes, including some key results from the past, including nucleate boiling, maximum heat flux, transition boiling, and film boiling.
Journal ArticleDOI

Critical heat flux

TL;DR: A survey of fundamental studies on the critical heat flux (CHF) phenomenon can be found in this paper, where the materials have been classified into four main boiling modes, subdivided into individual important topics and arranged in a proper sequence so as to show the synthetic framework of the CHF phenomenon.
Journal ArticleDOI

Nucleate and transition boiling heat transfer under pool and external flow conditions

TL;DR: An overview of the boiling process, including recent advances made toward a mechanistic understanding of nucleate and transition boiling, is presented in this article, but this review does not include boiling on enhanced surfaces or boiling of mixtures.
Journal ArticleDOI

Transient boiling heat transfer under forced convection

TL;DR: In this paper, an experimentally studied transient boiling heat transfer under forced convection was conducted, where an exponential increasing heat input was supplied to a platinum wire in water flowing upward in a round tube at pressures from 0.143 to 1.503 MPa.
Journal ArticleDOI

Mechanisms of transitions to film boiling at CHFs in subcooled and pressurized liquids due to steady and increasing heat inputs

TL;DR: In this article, the transition from non-boiling to film boiling at CHF highly subcooled liquids at high pressure measured was not explained by the mechanism of heat transfer crisis based on the hydrodynamic instability (HI) model.
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