Pregled bibliografske jedinice broj: 638476
Distortion-immune 9-node displacement-based quadrilateral thick plate finite elements that satisfy constant-bending patch test
Distortion-immune 9-node displacement-based quadrilateral thick plate finite elements that satisfy constant-bending patch test // International journal for numerical methods in engineering, 98 (2014), 7; 492-517 doi:10.1002/nme.4639 (međunarodna recenzija, članak, znanstveni)
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Naslov
Distortion-immune 9-node displacement-based quadrilateral thick plate finite elements that satisfy constant-bending patch test
Autori
Ribarić, Dragan ; Jelenić, Gordan
Izvornik
International journal for numerical methods in engineering (0029-5981) 98
(2014), 7;
492-517
Vrsta, podvrsta i kategorija rada
Radovi u časopisima, članak, znanstveni
Ključne riječi
Mindlin plate theory ; quadrilateral displacement-based plate finite elements ; higher-order linked interpolation ; distorted mesh geometry
Sažetak
We employ the linked interpolation concept to develop a higher-order 9-node quadrilateral plate finite element with curved sides which passes the constant bending patch test for arbitrary node positions. The linked interpolation for the plate displacements is expanded with three bubble parameters to get polynomial completeness necessary to satisfy the patch test. In contrast to some other techniques, the elements developed in this way retain a symmetric stiffness matrix at a marginal computational expense at the element level. Two new elements are generated using this concept and tested on several examples with curved sides or some kind of geometric distortion.
Izvorni jezik
Engleski
Znanstvena područja
Temeljne tehničke znanosti
POVEZANOST RADA
Projekti:
114-0000000-3025 - Unapređenje točnosti nelinearnih grednih elemenata s neograničenim 3D rotacijama
Ustanove:
Građevinski fakultet, Rijeka
Citiraj ovu publikaciju:
Časopis indeksira:
- Current Contents Connect (CCC)
- Web of Science Core Collection (WoSCC)
- Science Citation Index Expanded (SCI-EXP)
- SCI-EXP, SSCI i/ili A&HCI
- Scopus