Configuration studies of an inflatable paraboloid reflector

被引:0
|
作者
Jairaja, R. [1 ]
Ranganath, R. [2 ]
Nataraju, B. S. [2 ]
Siddeswarappa, B. [3 ]
机构
[1] Univ BDT Coll Engn, Davangere 577004, India
[2] ISRO, Satellite Ctr, Spacecraft Mech Grp, Bangalore 560017, Karnataka, India
[3] Univ BDT Coll Engn, Dept Ind & Prod Engn, PG Dept Studies, Davangere 577004, India
来源
JOURNAL OF SPACECRAFT TECHNOLOGY | 2008年 / 18卷 / 01期
关键词
paraboloid reflector; membrane; FE model;
D O I
暂无
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
Inflatable structures possess tremendous potential as antenna and reflective devices in aerospace applications. Their low weight and small packaging volume permit large diameter inflatable antennae in deployed configuration. This work deals with the configuration analysis of an inflated paraboloid reflector with kapton as the membrane material. The non-linear membrane element in the finite element analysis package, NASTRAN is used as the basic building block. Initially the analysis is carried out on a single circular flat membrane with circumferential edge support and the results are verified with that available in literature. Subsequently, two initially curved surface membranes are analysed together for different F/D ratios to obtain a paraboloid shape with circumferential edge support. A parametric study has been conducted for variations on initial curvature, arc length of support, thickness of the membrane and internal pressure. The surface RMS values, modal frequency and stress patterns are evaluated. Further, a convergence analysis is carried out to arrive at the optimal mesh size and the number of pressure load increments. This study brings out a configuration of an inflatable paraboloid reflector with considerably lesser mechanical complexity having with a potential for a possible usage in space applications.
引用
收藏
页码:37 / 47
页数:11
相关论文
共 50 条
  • [1] Numerical and experimental study on novel tensioning method for the inflatable paraboloid reflector antenna
    Shinde, Swapnil D.
    Upadhyay, S. H.
    MECHANICS BASED DESIGN OF STRUCTURES AND MACHINES, 2024, 52 (01) : 54 - 71
  • [2] Wrinkle analysis of the space inflatable paraboloid antenna
    Xiao W.-W.
    Chen W.-J.
    Fu G.-Y.
    Journal of Shanghai Jiaotong University (Science), 2011, 16 (1) : 24 - 33
  • [3] Wrinkle Analysis of the Space Inflatable Paraboloid Antenna
    肖薇薇
    陈务军
    付功义
    JournalofShanghaiJiaotongUniversity(Science), 2011, 16 (01) : 24 - 33
  • [4] FEED ARRANGEMENT FOR AXIS DEFINITION OF PARABOLOID REFLECTOR
    CORNBLEET, S
    ELECTRONICS LETTERS, 1973, 9 (03) : 66 - 67
  • [5] Method for the Assessment of Paraboloid Reflector Longitudinal Aberration.
    Gavrilenkov, V.A.
    Skolozdra, S.V.
    Smolyanskii, M.F.
    Trembach, V.V.
    Svetotehnika, 1987, (03): : 2 - 4
  • [6] Paraboloid reflector antennas - Review of simple design parameters
    Reddy, PK
    Ramalakshmi, V
    Pal, S
    IETE TECHNICAL REVIEW, 1999, 16 (01) : 5 - 18
  • [7] Thermal Design of a Glass Enclosing a Paraboloid Reflector.
    Belousova, L.E.
    1600,
  • [8] PERFORMANCE OF AN ACTIVE ANTENNA-FED PARABOLOID REFLECTOR
    SANCHETI, S
    FUSCO, VF
    MICROWAVE AND OPTICAL TECHNOLOGY LETTERS, 1994, 7 (16) : 740 - 741
  • [9] Paraboloid reflector antennas - review of simple design parameters
    Reddy, P.K.
    Ramalakshmi, V.
    Pal, Surendra
    IETE Technical Review (Institution of Electronics and Telecommunication Engineers, India), 16 (01): : 5 - 18
  • [10] Reflector design and precision measurement of inflatable antenna
    Space Structure Research Center, Zhejiang University, Hangzhou 310027, China
    不详
    Zhejiang Daxue Xuebao (Gongxue Ban), 2007, 11 (1921-1926): : 1921 - 1926