Feasibility of applying probabilistic FEM for random strain-softening media
is explored. Based upon the incremental theory, a modified initial stress
method is introduced associated with displacement control technique to deal
with the strain-softening problem. A probabilistic finite-element formulat
ion for strain-softening media is proposed based on the direct differentiat
ion scheme on the suggested modified initial stress method. Adjoint vector
method is applied to save the computational time for the problem involving
large amount of random variables. An efficient reliability evaluation is th
en performed by the proposed probabilistic FEM, and displacement Taylor exp
ansion scheme is suggested to avoid re-factorization of global stiffness ma
trix during the iterative computation of design point. A numerical example
is given to demonstrate the proposed method. (C) 2001 Elsevier Science B.V.
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