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  • 1
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    Nat. Research Council, Div. Geology and Geography
    In:  London, Nat. Research Council, Div. Geology and Geography, vol. 159, no. 22, pp. 662-664, (ISBN 0-470-87000-1 (HB), ISBN 0-470-87001-X (PB))
    Publication Date: 1938
    Keywords: Project report/description ; Geol. aspects
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  • 2
    Publication Date: 2019-07-17
    Description: Lightweight aerospace structures, such as low areal density composite space reflectors, are highly flexible and may undergo large deflection under applied loading, especially during the launch phase. Accordingly, geometrically nonlinear analysis that takes into account the effect of finite rotation may be needed to determine the deformed shape for a clearance check and the stress and strain state to ensure structural integrity. In this study, deformation of the space reflector is determined under static conditions using a geometrically nonlinear solid shell finite element model. For the solid shell element formulation, the kinematics of deformation is described by six variables that are purely vector components. Because rotational angles are not used, this approach is free of the limitations of small angle increments. This also allows easy connections between substructures and large load increments with respect to the conventional shell formulation using rotational parameters. Geometrically nonlinear analyses were carried out for three cases of static point loads applied at selected points. A chart shows results for a case when the load is applied at the center point of the reflector dish. The computed results capture the nonlinear behavior of the composite reflector as the applied load increases. Also, they are in good agreement with the data obtained by experiments.
    Keywords: Composite Materials
    Type: FEMCI Workshop 2001: Innovative FEM Solutions to Challenging Problems; May 16, 2001 - May 17, 2001; Greenbelt, MD; United States
    Format: text
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  • 3
    Publication Date: 2019-06-27
    Description: Approach and departure paths of VTOL aircraft under constraints of noise, traffic, safety, and economy for optimum trajectory
    Keywords: AIRCRAFT
    Type: NASA-CR-103293 , RE-55
    Format: application/pdf
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  • 4
    Publication Date: 2019-07-13
    Description: NASA's Space Station Maintenance Planning and Analysis (MP&A) Study is a step in the overall Space Station Program to define optimum approaches for on-orbit maintenance planning and logistics support. The approach used in the MP&A study and the analysis process used are presented. Emphasis is on maintenance activities and processes that can be accomplished on orbit within the known design and support constraints of the Space Station. From these analyses, recommendations for maintainability/maintenance requirements are established. The ultimate goal of the study is to reduce on-orbit maintenance requirements to a practical and safe minimum, thereby conserving crew time for productive endeavors. The reliability, availability, and maintainability (RAM) and operations performance evaluation models used were assembled and developed as part of the MP&A study and are described. A representative space station system design is presented to illustrate the analysis process.
    Keywords: ASTRONAUTICS (GENERAL)
    Type: Annual Reliability and Maintainability Symposium; Jan 26, 1988 - Jan 28, 1988; Los Angeles, CA; United States
    Format: text
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  • 5
    Publication Date: 2019-07-12
    Description: Bar-coding, radio-frequency, and voice-operated systems selected. Report discusses study of state-of-the-art in automated collection of data for management of large inventories. Study included comprehensive search of literature on data collection and inventory management, visits to existing automated inventory systems, and tours of selected supply and transportation facilities at Kennedy Space Center. Information collected analyzed in view of needs of conceptual inventory-management systems for Kennedy Space Center and for manned space station and other future space projects.
    Keywords: MATHEMATICS AND INFORMATION SCIENCES
    Type: KSC-11349 , NASA Tech Briefs (ISSN 0145-319X); 11; 3; P. 77
    Format: text
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