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  • Lunar and Planetary Science and Exploration; Aircraft Design, Testing and Performance  (1)
  • 2005-2009  (1)
  • 1975-1979
  • 1
    Publication Date: 2019-07-13
    Description: This paper presents analyses, designs and experimental results for the gas management system of a hydrogen-filled blimp capable of flying in the lower atmosphere of Titan for a period of one year or more. The engineering strategy has two basic elements: first, to minimize leakage rates from the blimp envelope and ballonets; and second, to provide auxiliary subsystems to mitigate the life-limiting effects resulting from those leaks. Leak minimization is achieved through use of cryogenically compatible balloon materials and adhesives, and selection of ballonet geometries that minimize pinhole generation via folding and material fatigue. Hydrogen loss to the environment through leaks in the blimp envelope is compensated for by producing new hydrogen through chemical processing of atmospheric methane. Nitrogen leaked into the blimp from the ballonets is removed by a carbon absorption system and periodically vented to the atmosphere. Data is presented on the measured leak rate from a full scale (13 m long) prototype blimp envelope and on the performance of a low mass, low power prototype device that generates hydrogen from methane. These results are factored in to an overall system design that quantifies the mass and power requirements for a minimum one year operational lifetime.
    Keywords: Lunar and Planetary Science and Exploration; Aircraft Design, Testing and Performance
    Type: COSPAR Scientific Assembly; Jul 13, 2008 - Jul 20, 2008; Montreal; Canada
    Format: text
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