Effectiveness of the edge-based smoothed finite element method applied to soft biological tissues. Frotscher, R., Raatschen, H., & Staat, M. In Holzapfel, G., A. & Ogden, R., W., editors, ESMC-2012 - 8th European Solid Mechanics Conference, Graz, Austria, July 9-13, 2012, 2012. Verlag der TU Graz.
abstract   bibtex   
Finite Element Analyses of organs and muscles in the female pelvic floor as well as cardiac tissue are highly non-linear due to the material behaviour, the large deformations and displacements, and the contacts with other organs or implants. We reduce the resulting high computational costs using the Smoothed Finite Element Method (S-FEM) developed by G.R. Liu and T. Nguyen-Thoi. The very good convergence of these methods is achieved by smoothing the strain field.
@inproceedings{
 title = {Effectiveness of the edge-based smoothed finite element method applied to soft biological tissues},
 type = {inproceedings},
 year = {2012},
 keywords = {plates,smoothed finite element method SFEM,strain smoothing},
 publisher = {Verlag der TU Graz},
 id = {8e9faa6c-5f71-3e6b-a73b-12f6543638d2},
 created = {2014-06-02T20:07:49.000Z},
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 last_modified = {2017-03-14T23:34:32.861Z},
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 citation_key = {frotscher2012graz},
 source_type = {inproceedings},
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 abstract = {Finite Element Analyses of organs and muscles in the female pelvic floor as well as cardiac tissue are highly non-linear due to the material behaviour, the large deformations and displacements, and the contacts with other organs or implants. We reduce the resulting high computational costs using the Smoothed Finite Element Method (S-FEM) developed by G.R. Liu and T. Nguyen-Thoi. The very good convergence of these methods is achieved by smoothing the strain field.},
 bibtype = {inproceedings},
 author = {Frotscher, Ralf and Raatschen, Hans-Jürgen and Staat, Manfred},
 editor = {Holzapfel, Gerhard A and Ogden, Ray W},
 booktitle = {ESMC-2012 - 8th European Solid Mechanics Conference, Graz, Austria, July 9-13, 2012}
}

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