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  • 1
    Publication Date: 1983-01-01
    Print ISSN: 0004-6981
    Electronic ISSN: 1878-2442
    Topics: Geosciences , Physics
    Published by Elsevier
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  • 2
    Publication Date: 2019-07-13
    Description: High temperature heat pipes are being evaluated for use in energy conversion applications such as fuel cells, gas turbine re-combustors, and Stirling cycle heat sources; with the resurgence of space nuclear power, additional applications include reactor heat removal elements and radiator elements. Long operating life and reliable performance are critical requirements for these applications. Accordingly long-term materials compatibility is being evaluated through the use of high temperature life test heat pipes. Thermacore International, Inc., has carried out several sodium heat pipe life tests to establish long term operating reliability. Four sodium heat pipes have recently demonstrated favorable materials compatibility and heat transport characteristics at high operating temperatures in air over long time periods. A 3l6L stainless steel heat pipe with a sintered porous nickel wick structure and an integral brazed cartridge heater has successfully operated at 650 to 700 C for over 115,000 hours without signs of failure. A second 3l6L stainless steel heat pipe with a specially-designed Inconel 60 I rupture disk and a sintered nickel powder wick has demonstrated over 83,000 hours at 600 to 650 C with similar success. A representative one-tenth segment Stirling Space Power Converter heat pipe with an Inconel 718 envelope and a stainless steel screen wick has operated for over 41 ,000 hours at nearly 700 0c. A hybrid (i.e. gas-fired and solar) heat pipe with a Haynes 230 envelope and a sintered porous nickel wick structure was operated for about 20,000 hours at nearly 700 C without signs of degradation. These life test results collectively have demonstrated the potential for high temperature heat pipes to serve as reliable energy conversion system components for power applications that require long operating lifetime with high reliability, Detailed design specifications, operating hi story, and test results are described for each of these sodium heat pipes. Lessons learned and future life test plans are also discussed.
    Keywords: Fluid Mechanics and Thermodynamics
    Type: NASA/TM-2004-212959 , E-14407 , Space Technology and Applications International Forum (STAIF-2004); Feb 08, 2004 - Feb 12, 2004; Albuquerque, NM; United States
    Format: application/pdf
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  • 3
    Publication Date: 2019-07-12
    Description: Improved version of heat pipe described in "High-Performance Ambient-Temperature Heat Pipe" (MFS-26062). Lining of sintered aluminum powder added to liquid channel. Results in improved thermal performance.
    Keywords: MECHANICS
    Type: MSC-21515 , NASA Tech Briefs (ISSN 0145-319X); 15; 5; P. 57
    Format: text
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  • 4
    Publication Date: 2019-07-12
    Description: New class of heat radiators made of metal or other conductive fin stock, fins of which are textured or covered with smaller fins. Measured from outside, effective emissivity of projected radiator surface greater than, and somewhat independent of, emissivity of flat surface made of same material. Special coatings to enhance emissivity not required, and emissivity not degraded significantly in long term by environmental effects. Intended orginally to radiate excess heat away from spacecraft, new radiators also used on Earth to dissipate heat in vacuum systems.
    Keywords: PHYSICAL SCIENCES
    Type: MFS-26033 , NASA Tech Briefs (ISSN 0145-319X); 11; 6; P. 33
    Format: text
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  • 5
    Publication Date: 2019-07-12
    Description: An improved heat pipe with an external artery. The longitudinal slot in the heat pipe wall which interconnects the heat pipe vapor space with the external artery is completely filled with sintered wick material and the wall of the external artery is also covered with sintered wick material. This added wick structure assures that the external artery will continue to feed liquid to the heat pipe evaporator even if a vapor bubble forms within and would otherwise block the liquid transport function of the external artery.
    Keywords: Fluid Mechanics and Thermodynamics
    Format: application/pdf
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