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Quadrilateral 2D linked-interpolation finite elements for micropolar continuum (CROSBI ID 247812)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Grbčić, Sara ; Jelenić, Gordan ; Ribarić, Dragan Quadrilateral 2D linked-interpolation finite elements for micropolar continuum // Acta mechanica sinica, 35 (2019), 5; 1001-1020. doi: 10.1007/s10409-019-00870-110409_ams2018-368

Podaci o odgovornosti

Grbčić, Sara ; Jelenić, Gordan ; Ribarić, Dragan

engleski

Quadrilateral 2D linked-interpolation finite elements for micropolar continuum

Quadrilateral finite elements for linear micropolar continuum theory are developed using linked interpolation. In order to satisfy convergence criteria, the newly presented finite elements are modified using the Petrov–Galerkin method in which different interpolation is used for the test and trial functions. The elements are tested through four numerical examples consisting of a set of patch tests, a cantilever beam in pure bending and a stress concentration problem and compared with the analytical solution and quadrilateral micropolar finite elements with standard Lagrangian interpolation. In the higher-order patch test, the performance of the first-order element is significantly improved. However, since the problems analysed are already describable with quadratic polynomials, the enhancement due to linked interpolation for higher-order elements could not be highlighted. All the presented elements also faithfully reproduce the micropolar effects in the stress concentration analysis, but the enhancement here is negligible with respect to standard Lagrangian elements, since the higher-order polynomials in this example are not needed.

micropolar theory, finite element method, linked interpolation, membrane elements

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Podaci o izdanju

35 (5)

2019.

1001-1020

objavljeno

0567-7718

1614-3116

10.1007/s10409-019-00870-110409_ams2018-368

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Temeljne tehničke znanosti

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