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Featured researches published by J.A.F. Santiago.


European Journal of Computational Mechanics | 2018

A new solution technique for cathodic protection systems with homogeneous region by the boundary element method

W. J. Santos; S. L. D. C. Brasil; J.A.F. Santiago; J.C.F. Telles

Abstract The purpose of this work is to efficiently evaluate the design of cathodic protection (CP) systems of tank bottoms using concentric ring or linear anodes. As customary in current CP systems, the outer surface of the tank bottom is usually in electrical contact with a slender homogeneous layer of conductive concrete (or something similar) which in turn is in direct contact with the homogeneous deep soil region. The boundary element method (BEM) together with a subregion technique has been widely adopted to analyse such CP systems where the domain consists of two (or even more) homogeneous zones. However, the numerical solution of the final matrix system of equations can be quite time-consuming, especially if the slender intermediate layer is to be discretised, requiring a considerable number of elements, due to its somewhat reduced thickness. To overcome this problem, the present work proposes a new methodology in which the slender subregion is indirectly introduced, as a theoretically created polarisation curve, acting as a new boundary condition at the boundary of the soil domain (original common interface). Numerical simulations have been carried out using BEM implementations and results are discussed, including CP studies of practical axisymmetric and three-dimensional engineering problems.


Archive | 2014

2.5D Acoustic Wave Propagation in Shallow Water Over an Irregular Seabed Using the Boundary Element Method

Andreia Pereira; A. Tadeu; L. Godinho; J.A.F. Santiago

In this paper a Boundary Element formulation, in the frequency domain, is used to investigate the 2.5D acoustic wave propagation in shallow water over an irregular seabed that is assumed to have a rigid bottom and a free surface.


Engineering Analysis With Boundary Elements | 2011

Efficient numerical models for the prediction of acoustic wave propagation in the vicinity of a wedge coastal region

E.G.A. Costa; Luís Godinho; J.A.F. Santiago; Andreia Pereira; Cleberson Dors


Engineering Analysis With Boundary Elements | 2014

Optimal positioning of anodes and virtual sources in the design of cathodic protection systems using the method of fundamental solutions

W.J. Santos; J.A.F. Santiago; J.C.F. Telles


Engineering Analysis With Boundary Elements | 2011

Two-dimensional version of Sternberg and Al-Khozaie fundamental solution for viscoelastic analysis using the boundary element method

F. Cezario; J.A.F. Santiago; R.F. Oliveira


Engineering Analysis With Boundary Elements | 2015

An iterative coupling between meshless methods to solve embedded crack problems

E.F. Fontes; J.A.F. Santiago; J.C.F. Telles


Engineering Analysis With Boundary Elements | 2013

On a regularized method of fundamental solutions coupled with the numerical Green's function procedure to solve embedded crack problems

E.F. Fontes; J.A.F. Santiago; J.C.F. Telles


Engineering Analysis With Boundary Elements | 2016

Using the Gaussian function to simulate constant potential anodes in multiobjective optimization of cathodic protection systems

W.J. Santos; J.A.F. Santiago; J.C.F. Telles


Communications in Numerical Methods in Engineering | 2006

An efficient Green's function for acoustic waveguide problems

J.A.F. Santiago; L.C. Wrobel


Engineering Analysis With Boundary Elements | 2016

Three efficient numerical models to analyse the step problem in shallow water

E.G.A. Costa; J.A.F. Santiago; Luís Godinho; L.C. Wrobel; W.J. Mansur

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J.C.F. Telles

Federal University of Rio de Janeiro

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E.F. Fontes

Federal University of Rio de Janeiro

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E.G.A. Costa

Federal University of Rio de Janeiro

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W.J. Santos

Federal University of Rio de Janeiro

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L.C. Wrobel

Brunel University London

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Cleberson Dors

Federal University of Rio de Janeiro

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F. Cezario

Centro Federal de Educação Tecnológica de Minas Gerais

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R.F. Oliveira

Federal University of Rio de Janeiro

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