HEAT TRANSFER CAPACITY OF HEAT PIPES WITH TRIANGULAR CAPILLARY STRUCTURES.
[In Russian. / En russe.]
Author(s) : PORTNOV V. D., GRIGOR'EVA T. M.
Type of article: Article
Summary
THIS STUDY WAS MADE FOR THE WHOLE LENGTH OF THE HEAT PIPE (EVAPORATION, ADIABATIC, CONDENSATION ZONE), ALLOWING FOR GRAVITATIONAL, FRICTION, SURFACE PRESSURE AND INERTIA FORCES. SOLUTION OF THE EQUATIONS OF CONSERVATION OF MOMENTUM AND MASS WRITTEN IN THE INTEGRAL FORM. RESULTS OF THE NUMERICAL CALCULATION OF THE VARIATION OF MAXIMUM DENSITY OF HEAT FLOW IN THE HEAT PIPE IN TERMS OF CAPILLARY GEOMETRY, THE HEAT PIPE LENGTH AND THE ANGLE OF WETTING OF CAPILLARY WALLS BY THE HEAT TRANSFER AGENT, WITHOUT SPLASH OF THE HEAT TRANSFER AGENT IN THE CONDENSER OF THE HEAT PIPE.
Details
- Original title: [In Russian. / En russe.]
- Record ID : 1986-1859
- Languages: Russian
- Source: Inzh.-fiz. Zh. - vol. 49 - n. 4
- Publication date: 1985
Links
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Indexing
- Themes: Heat transfer
- Keywords: Heat pipe; Capillary; Calculation; Momentum; Mass transfer; Heat transfer
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TURBULENT HEAT AND MASS TRANSFER.
- Author(s) : JISCHA M.
- Date : 1985/04
- Languages : English
- Source: Int. chem. Eng. - vol. 25 - n. 2
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- Author(s) : SOUMERAI H. P.
- Date : 1984
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- Date : 1983/08/07
- Languages : English
- Source: [Refrigeration serving humanity]. Proceedings of the XVIth international Congress of Refrigeration.
- Formats : PDF
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COMBINED MOMENTUM, HEAT AND MASS TRANSFER IN VE...
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- Date : 1985
- Languages : English
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- Formats : PDF
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Measurement of mass and momentum transport in w...
- Author(s) : MUDAWAR I., HOUPT R. A.
- Date : 1993/11
- Languages : English
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