CLC number: TU393.3
On-line Access: 2024-08-27
Received: 2023-10-17
Revision Accepted: 2024-05-08
Crosschecked: 0000-00-00
Cited: 4
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ZHANG Li-mei, CHEN Wu-jun, DONG Shi-lin. Initial pre-stress finding procedure and structural performance research for Levy cable dome based on linear adjustment theory[J]. Journal of Zhejiang University Science A, 2007, 8(9): 1366-1372.
@article{title="Initial pre-stress finding procedure and structural performance research for Levy cable dome based on linear adjustment theory",
author="ZHANG Li-mei, CHEN Wu-jun, DONG Shi-lin",
journal="Journal of Zhejiang University Science A",
volume="8",
number="9",
pages="1366-1372",
year="2007",
publisher="Zhejiang University Press & Springer",
doi="10.1631/jzus.2007.A1366"
}
%0 Journal Article
%T Initial pre-stress finding procedure and structural performance research for Levy cable dome based on linear adjustment theory
%A ZHANG Li-mei
%A CHEN Wu-jun
%A DONG Shi-lin
%J Journal of Zhejiang University SCIENCE A
%V 8
%N 9
%P 1366-1372
%@ 1673-565X
%D 2007
%I Zhejiang University Press & Springer
%DOI 10.1631/jzus.2007.A1366
TY - JOUR
T1 - Initial pre-stress finding procedure and structural performance research for Levy cable dome based on linear adjustment theory
A1 - ZHANG Li-mei
A1 - CHEN Wu-jun
A1 - DONG Shi-lin
J0 - Journal of Zhejiang University Science A
VL - 8
IS - 9
SP - 1366
EP - 1372
%@ 1673-565X
Y1 - 2007
PB - Zhejiang University Press & Springer
ER -
DOI - 10.1631/jzus.2007.A1366
Abstract: The cable-strut structural system is statically and kinematically indeterminate. The initial pre-stress is a key factor for determining the shape and load carrying capacity. A new numerical algorithm is presented herein for the initial pre-stress finding procedure of complete cable-strut assembly. This method is based on the linear adjustment theory and does not take into account the material behavior. By using this method, the initial pre-stress of the multi self-stress modes can be found easily and the calculation process is simplified and efficient also. Finally, the initial pre-stress and structural performances of a particular levy cable dome are analyzed comprehensively. The algorithm has proven to be efficient and correct, and the numerical results are valuable for practical design of levy cable dome.
[1] Argyris, J.H., Scharpf, D.W., 1972. Large deflection analysis of pre-stressed networks. ASCE, Journal of Structural Division, 98(ST3):633-654.
[2] Calladine, C.R., 1991. First-order infinitesimal mechanisms. International Journal of Solids and Structures, 27(4):505-515.
[3] Chen, W.J., 2005. Design of Membrane Structure Engineering. China Architecture & Building Press, Beijing (in Chinese).
[4] Gomez Estrada, G., Bungartz, H.J., Mohrdieck, C., 2006. Numerical form-finding of tensegrity structures. International Journal of Solids and Structures, 43(22-23):6855-6868.
[5] Kmet, S., Kokorudová, Z., 2006. Nonlinear analytical solution for cable truss. Journal of Engineering Mechanics, 132(1):119-123.
[6] Linkwitz, K., Grutndig, L., 1987. Strategies of Form Finding and Design and Construction of Cutting Patterns for Large Sensitive Membrane Structures. International Conference on the Design and Construction of Non-conventional Structures, p.315-321.
[7] Luo, R.Z., Dong, S.L., 2000. Calculating of initial pre-stress for cable-struts. Journal of Building Structures, 21(5):59-64 (in Chinese).
[8] Otter, J.R., 1964. Computations for pre-stressed concrete reactor pressure vessels using dynamic relaxation. Nuclear Structure Eng., 1:61-75.
[9] Pellegrino, S., 1990. Analysis of prestressed mechanisms. International Journal of Solids and Structures, 26(12):1329-1349.
[10] Pellegrino, S., 1993. Structural computations with the singular value decomposition of the equilibrium matrix. International Journal of Solids and Structures, 30(21):3025-3035.
[11] Schek, H.J., 1974. The force density method for form finding and computation of general networks. Computer Methods in Applied Mechanics and Engineering, 3(1):115-134.
[12] Shan, W., Yamamoto, C., Oda, K., 1993. Analysis of frame cable structures. Computers and Structures, 47(4-5):673-682.
[13] Singer, P., 1995. Die Berechung von Minimalflachen, Sefenblasen, Membrane und Pneus aus Geodatischer Sicht. Ph.D Thesis, Stuttgart University, Munchen, Germany.
[14] Strobel, D., 2004. Computational Modeling Concepts. The Ninth International Workshop on the Design and Practical Realisation of Architectural Membrane Structures, Berlin.
[15] Yuan, X.F., 2003. Integral feasible prestress of cable domes. Computers and Structures, 81(21):2111-2119.
[16] Yuan, X.F., Dong, S.L., 2005. New forms and initial prestress calculation of cable domes. Engineering Mechanics, 22(2):22-26 (in Chinese).
[17] Zhang, W.D., 2004. Theoretical and Experimental Research of Sunflower-Patterned Cable Dome. Ph.D Thesis, Zhejiang University, Hangzhou (in Chinese).
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