Spline finite elements for thin plates and shells of arbitrary geometry
The development of plate and shell elements has been a most important topic in the research of finite element method. In the present work, two spline finite elements, namely a thin plate, and a thin shell element applicable to the analysis of arbitrary plate and shell structures are developed. The e...
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sg-ntu-dr.10356-194602023-03-03T19:14:42Z Spline finite elements for thin plates and shells of arbitrary geometry Luah, Mui Huang. Fan, Sau Cheong School of Civil and Structural Engineering DRNTU::Engineering::Civil engineering::Structures and design The development of plate and shell elements has been a most important topic in the research of finite element method. In the present work, two spline finite elements, namely a thin plate, and a thin shell element applicable to the analysis of arbitrary plate and shell structures are developed. The elements are 9-node, quadrilateral, Kirchhoff-type C elements derived from the conventional displacement approach. Three new features of finite element formulation are included in the development and these are: (i) the use of B3-spline shape functions for the interpolations of both in-plane and out-of-plane displacements of a general thin shell element; (ii) the use of "displacement constraints" and "parameters shifting" to construct a finite element model; and (iii) a proposed modified version of the Koiter's thin shell equations is employed. The resulting elements have advantages such as high accuracy and efficiency, attractive nodal configuration (resembles that of SemiLoof element), insensitive to mesh distortion, etc. Doctor of Philosophy 2009-12-11T09:16:52Z 2009-12-11T09:16:52Z 1992 1992 Thesis http://hdl.handle.net/10356/19460 en NANYANG TECHNOLOGICAL UNIVERSITY 176 p. application/pdf |
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DRNTU::Engineering::Civil engineering::Structures and design Luah, Mui Huang. Spline finite elements for thin plates and shells of arbitrary geometry |
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The development of plate and shell elements has been a most important topic in the research of finite element method. In the present work, two spline finite elements, namely a thin plate, and a thin shell element applicable to the analysis of arbitrary plate and shell structures are developed. The elements are 9-node, quadrilateral, Kirchhoff-type C elements derived from the conventional displacement approach. Three new features of finite element formulation are included in the development and these are: (i) the use of B3-spline shape functions for the interpolations of both in-plane and out-of-plane displacements of a general thin shell element; (ii) the use of "displacement constraints" and "parameters shifting" to construct a finite element model; and (iii) a proposed modified version of the Koiter's thin shell equations is employed. The resulting elements have advantages such as high accuracy and efficiency, attractive nodal configuration (resembles that of SemiLoof element), insensitive to mesh distortion, etc. |
author2 |
Fan, Sau Cheong |
author_facet |
Fan, Sau Cheong Luah, Mui Huang. |
format |
Theses and Dissertations |
author |
Luah, Mui Huang. |
author_sort |
Luah, Mui Huang. |
title |
Spline finite elements for thin plates and shells of arbitrary geometry |
title_short |
Spline finite elements for thin plates and shells of arbitrary geometry |
title_full |
Spline finite elements for thin plates and shells of arbitrary geometry |
title_fullStr |
Spline finite elements for thin plates and shells of arbitrary geometry |
title_full_unstemmed |
Spline finite elements for thin plates and shells of arbitrary geometry |
title_sort |
spline finite elements for thin plates and shells of arbitrary geometry |
publishDate |
2009 |
url |
http://hdl.handle.net/10356/19460 |
_version_ |
1759854367990611968 |