An experimental investigation of surface effects on nucleate pool boiling of liquid nitrogen from a horizontal surface

Approved for public release, distribution is unlimited. === The effect of various surface conditions on the characteristic boiling curve for liquid nitrogen was experimentally investigated. A circular horizontal flat plate five square centimeters in area was utilized as a boiler surface. The surfa...

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Main Author: George, Harold Wayne
Other Authors: Marto, Paul J.
Language:en_US
Published: Monterey, California. U.S. Naval Postgraduate School 2012
Online Access:http://hdl.handle.net/10945/12162
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spelling ndltd-nps.edu-oai-calhoun.nps.edu-10945-121622015-06-24T15:59:58Z An experimental investigation of surface effects on nucleate pool boiling of liquid nitrogen from a horizontal surface George, Harold Wayne Marto, Paul J. Naval Postgraduate School Department of Mechanical Engineering Approved for public release, distribution is unlimited. The effect of various surface conditions on the characteristic boiling curve for liquid nitrogen was experimentally investigated. A circular horizontal flat plate five square centimeters in area was utilized as a boiler surface. The surfaces investigated included mirror finished surface, etched surfaces, and surfaces with .0043 inch diameter artificial cylindrical cavities. Each of these surface conditions was used with Electrical Tough Pitch Copper and Nickel 200 boiling surfaces. The results indicate that surface conditions significantly affect the heat transfer coefficients during nucleate pool boiling of liquid nitrogen. Results from hysteresis data indicate that once boiling sites become active they tend to remain active and produce higher heat transfer rates. 2012-08-29T23:31:21Z 2012-08-29T23:31:21Z 1967-06 Thesis http://hdl.handle.net/10945/12162 en_US This publication is a work of the U.S. Government as defined in Title 17, United States Code, Section 101. As such, it is in the public domain, and under the provisions of Title 17, United States Code, Section 105, it may not be copyrighted. Monterey, California. U.S. Naval Postgraduate School
collection NDLTD
language en_US
sources NDLTD
description Approved for public release, distribution is unlimited. === The effect of various surface conditions on the characteristic boiling curve for liquid nitrogen was experimentally investigated. A circular horizontal flat plate five square centimeters in area was utilized as a boiler surface. The surfaces investigated included mirror finished surface, etched surfaces, and surfaces with .0043 inch diameter artificial cylindrical cavities. Each of these surface conditions was used with Electrical Tough Pitch Copper and Nickel 200 boiling surfaces. The results indicate that surface conditions significantly affect the heat transfer coefficients during nucleate pool boiling of liquid nitrogen. Results from hysteresis data indicate that once boiling sites become active they tend to remain active and produce higher heat transfer rates.
author2 Marto, Paul J.
author_facet Marto, Paul J.
George, Harold Wayne
author George, Harold Wayne
spellingShingle George, Harold Wayne
An experimental investigation of surface effects on nucleate pool boiling of liquid nitrogen from a horizontal surface
author_sort George, Harold Wayne
title An experimental investigation of surface effects on nucleate pool boiling of liquid nitrogen from a horizontal surface
title_short An experimental investigation of surface effects on nucleate pool boiling of liquid nitrogen from a horizontal surface
title_full An experimental investigation of surface effects on nucleate pool boiling of liquid nitrogen from a horizontal surface
title_fullStr An experimental investigation of surface effects on nucleate pool boiling of liquid nitrogen from a horizontal surface
title_full_unstemmed An experimental investigation of surface effects on nucleate pool boiling of liquid nitrogen from a horizontal surface
title_sort experimental investigation of surface effects on nucleate pool boiling of liquid nitrogen from a horizontal surface
publisher Monterey, California. U.S. Naval Postgraduate School
publishDate 2012
url http://hdl.handle.net/10945/12162
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