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Modelos Não Lineares do Método dos Elementos de Contorno para ...

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SOARES, R.C. (2001). Um estu<strong>do</strong> sobre mo<strong>de</strong>los mecânico-probabilísticos <strong>para</strong><br />

pórticos <strong>de</strong> concreto arma<strong>do</strong>. Tese (Doutora<strong>do</strong>) - Escola <strong>de</strong> Engenharia <strong>de</strong> São Carlos,<br />

Universida<strong>de</strong> <strong>de</strong> São Paulo, São Carlos.<br />

SOBCZYK, K; SPENCER, B, F. (1992). Ran<strong>do</strong>m Fatigue: From Data to Theory.<br />

Aca<strong>de</strong>mic Press.<br />

SOLLERO, P; ALIABADI, M.H. (1994). Anisotropy analysis of cracks emanating from<br />

circular holes in composite laminates using the boundary element. Eng. Fract. Mech.,<br />

V.49, 213-224.<br />

SOUTHWELL, R.V. (1946). Relaxation Methods in Theoretical Physics, Oxford<br />

University Press, Lon<strong>do</strong>n<br />

SPACONE, E.; LIMKATANYU, S. (2000). Responses of reinforced concrete members<br />

including bond-slip effects. ACI Structural Journal, Vol. 97, No. 6, November-<br />

December, pp. 831-839.<br />

STAMOS, A, A; BESKOS, D.E. (1995). Dynamic analysis of large 3D un<strong>de</strong>rground<br />

structures by the BEM. Earthquake engineering and structural dynamics, v. 24, p. 917-<br />

934.<br />

STAVROULAKIS, G, E; ANTES, H. (2000). Unilateral Crack I<strong>de</strong>ntification: A Filter-<br />

Driven, Iterative Boundary Element Approach. Journal of Global Optimization, V.17,<br />

339-352.<br />

SURESH, S. (2004). Fatigue of Materials, second edition, Cambridge Press.<br />

SYMM, G.T. (1963). Integral equation methods in potential theory II. Proc. Royal<br />

Society Ser., v. A275, 33-46.<br />

SWEDLON, G.L; CRUSE, T.A. (1971). Formulation of boundary integral equations<br />

for the three dimensional elastopastic flow. Int. Journal Solids Structures, V.7, 1673-<br />

1683.<br />

TANAKA, K. (1974). Fatigue propagation from a crack inclined to the cyclic tensile<br />

axis. Engng. Fract. Mech. V.6, 493-507.<br />

TANAKA, H; TOYODA-MAKINO, M. (1998). Cost-based optimal relation between<br />

inspection time and assessment time for ran<strong>do</strong>m fatigue crack growth. Probabilistic<br />

Engineering Mechanics, V13, 69-76<br />

TASSIOS, T. (1979). Properties of Bond between Concrete and Steel un<strong>de</strong>r load Cycles<br />

i<strong>de</strong>alizing seismic Actions. In: CEB – Symposium, V.1.<br />

TELLES, J.C.F. (1983). The Boundary Element Method applied to inelastic problems.<br />

Springer:Berlin<br />

TELLES, J.C.F; GUIMARÃES, S. (2000). Green’s function: A numerical generation<br />

for fracture mechanics problems via Boundary Elements. Comput. Meth. Appl. Mech.,<br />

V.188, 847-858.<br />

Capítulo 12 – Referências Bibliográficas ________________________________________<br />

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