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An efficient approximate analysis method based on an exact univariate model for the element loads

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Abstract

Approximate analysis modules for structural design are usually based on a linear Taylor expansion of the nodal displacements in terms of the reciprocals of the design variables. Direct approximations of the member forces have received lesser attention. This paper describes an approach for the direct calculation of the member forces in a truss as a function of the design variables. It is based on the exact expression of the member forces if only one design variable is allowed to vary at a time. In the case of an arbitrary move in the design space the method gives approximate results of a very good quality. This is obtained by enforcing zero order homogeneity of the element loads and by refining the results via a virtual work equation. The method is illustrated with numerical results on previously published test cases for elastic trusses. Preliminary results for an elastic frame are also presented. This new approximate force model is shown to yield excellent results.

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References

  • Abu Kassim, A.M.; Topping, B.H.V. 1985: Static reanalysis of structures: a review. In: Topping, B.H.V. (ed.)Civil-Comp 85. Proc. Sec. Int. Conf. Civ. and Str. Eng. Comp. 2, pp. 137–146, Edinburgh: Civil-Comp Press

    Google Scholar 

  • Arora, J.S. 1976: Survey of structural reanalysis techniques.J. Struct. Div. ASCE,102, 783–802

    Google Scholar 

  • Ding, H.; Gallagher, R.H. 1985: Approximate force method reanalysis techniques in optimum structural design.Int. J. Num. Meth. Eng. 21, 1253–1267

    Google Scholar 

  • Fleury, C.; Geradin, M. 1978: Optimality criteria and mathematical programming in structural weight minimization.Comp. Struct. 8, 7–17

    Google Scholar 

  • Fuchs, M.B. 1980: Linearized homogeneous constraints in structural design.Int. J. Mech. Sci. 23, 733–740

    Google Scholar 

  • Fuchs, M.B. 1981: Explicit optimum design.Int. J. Solids Struct. 181, 13–22

    Google Scholar 

  • Fuchs, M.B. 1981a: Convergence of stress-ratio method.J. Eng. Mech. Div. ASCE 107, 1119–1131

    Google Scholar 

  • Fuchs, M.B.; Haj Ali, R. 1990: A family of homogeneous models for the design of scalable structures.Struct. Optim. 2, 143–152

    Google Scholar 

  • Fuchs, M.B. 1990: Unimodal beam elements.Int. J. Solids Struct. (accepted)

  • Grierson, D.E.; Lee, W.H. 1986: Optimal synthesis of frameworks under elastic and plastic performance constraints using discrete elements.J. Struct. Mech. 144, 401–420

    Google Scholar 

  • Haftka, R.; Kamat, M.P. 1985:Elements of structural optimization. Dordrecht: Nijhoff

    Google Scholar 

  • Haug, E.J.; Arora, J.S. 1979:Applied optimum design. New York: Wiley and Sons

    Google Scholar 

  • Kirsch, U.; Taye, S. 1988: High quality approximations of forces for optimum structural design.J. Comp. Struct. 303, 519–527

    Google Scholar 

  • Schmit, L.A.; Farshi, B. 1976: Some approximation concepts for structural synthesis.AIAA J. 14, 661–671

    Google Scholar 

  • Steinberg, Y. 1989:New approximate force method in optimal structural design. M. Sc. Thesis, Department of Solid Mechanics, Material and Structures, Faculty of Engineering, Tel-Aviv University (in Hebrew)

  • Vanderplaats, G.N.; Sugimoto, H. 1986: A general purpose optimization program for engineering design.J. Comp. Struct. 241, 13–21

    Google Scholar 

  • Vanderplaats, G.N.; Salajegheh, E. 1989: New approximation method for stress constraints in structural synthesis.AIAA J. 273, 352–358

    Google Scholar 

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Fuchs, M.B., Steinberg, Y. An efficient approximate analysis method based on an exact univariate model for the element loads. Structural Optimization 3, 107–114 (1991). https://doi.org/10.1007/BF01743280

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