Liquid and gas distributions in a two-phase boiling analogy

This report contains a description of the design and operation of an experimental appats for the analysis of two-phase flows similar to thom occuwring in boiler tubes at low pressures. Velocity and denuity profiles of air-water mixtures are determined across a passage in which boiling Ocditiosis are...

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Main Authors: Wallis, Graham B., Griffith, P.
Other Authors: Massachusetts Institute of Technology. Division of Industrial Cooperation. DSR Project no. 7-7673.
Format: Technical Report
Published: Cambridge, Mass. : Massachusetts Institute of Technology, Division of Industrial Cooperation, [1958] 2011
Subjects:
Online Access:http://hdl.handle.net/1721.1/61494
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author Wallis, Graham B.
Griffith, P.
author2 Massachusetts Institute of Technology. Division of Industrial Cooperation. DSR Project no. 7-7673.
author_facet Massachusetts Institute of Technology. Division of Industrial Cooperation. DSR Project no. 7-7673.
Wallis, Graham B.
Griffith, P.
author_sort Wallis, Graham B.
collection MIT
description This report contains a description of the design and operation of an experimental appats for the analysis of two-phase flows similar to thom occuwring in boiler tubes at low pressures. Velocity and denuity profiles of air-water mixtures are determined across a passage in which boiling Ocditiosis are simulated by puping air through porous walls into a water strea. Photographs of the flow patterns are also presented as a qualitative check on the quantitative data. The results obtained are: 1) Vslocity and concentration profiles of the two phases for various values of the flow rates of each. 2) A classification of the flow into several patterns or regimes with quantitative data describing each regims. The data is suitable for use In acapering the physical phenen with athematical models and for developing a more accurate theoretical treatment of the flow of boiling fluids in heated channels.
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spelling mit-1721.1/614942019-04-10T18:06:17Z Liquid and gas distributions in a two-phase boiling analogy Wallis, Graham B. Griffith, P. Massachusetts Institute of Technology. Division of Industrial Cooperation. DSR Project no. 7-7673. Massachusetts Institute of Technology. Heat Transfer Laboratory. Boiling-points. This report contains a description of the design and operation of an experimental appats for the analysis of two-phase flows similar to thom occuwring in boiler tubes at low pressures. Velocity and denuity profiles of air-water mixtures are determined across a passage in which boiling Ocditiosis are simulated by puping air through porous walls into a water strea. Photographs of the flow patterns are also presented as a qualitative check on the quantitative data. The results obtained are: 1) Vslocity and concentration profiles of the two phases for various values of the flow rates of each. 2) A classification of the flow into several patterns or regimes with quantitative data describing each regims. The data is suitable for use In acapering the physical phenen with athematical models and for developing a more accurate theoretical treatment of the flow of boiling fluids in heated channels. Office of Naval Research DSR Project 2011-03-04T23:38:21Z 2011-03-04T23:38:21Z 1958 Technical Report 15186914 http://hdl.handle.net/1721.1/61494 Technical report (Massachusetts Institute of Technology, Heat Transfer Laboratory) ; no. 13. [82] leaves in various pagings (some unnumbered) application/pdf Cambridge, Mass. : Massachusetts Institute of Technology, Division of Industrial Cooperation, [1958]
spellingShingle Boiling-points.
Wallis, Graham B.
Griffith, P.
Liquid and gas distributions in a two-phase boiling analogy
title Liquid and gas distributions in a two-phase boiling analogy
title_full Liquid and gas distributions in a two-phase boiling analogy
title_fullStr Liquid and gas distributions in a two-phase boiling analogy
title_full_unstemmed Liquid and gas distributions in a two-phase boiling analogy
title_short Liquid and gas distributions in a two-phase boiling analogy
title_sort liquid and gas distributions in a two phase boiling analogy
topic Boiling-points.
url http://hdl.handle.net/1721.1/61494
work_keys_str_mv AT wallisgrahamb liquidandgasdistributionsinatwophaseboilinganalogy
AT griffithp liquidandgasdistributionsinatwophaseboilinganalogy