This paper reports the results from three-dimensional dynamic finite-element analysis undertaken to provide insight into the behaviour of OMNI-Max™ anchors during dynamic installation in non-homogeneous clay. The large-deformation finite-element analyses were carried out using the coupled Eulerian–Lagrangian approach, modifying the simple elastic–perfectly plastic Tresca soil model to allow strain softening, and incorporate strain-rate dependency of the shear strength using the Herschel–Bulkley model. The results were validated against field data prior to undertaking a detailed parametric study, exploring the relevant range of parameters in terms of anchor mass, impact velocity and soil strength. To predict the embedment depth in the field, an improved rational analytical embedment model, based on the total energy method, was proposed, with the large-deformation finite-element data used to calibrate the model.
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December 2015
Research Article|
September 02 2015
Dynamic installation of OMNI-Max anchors in clay: numerical analysis
Y. H. Kim;
Y. H. Kim
*Centre for Offshore Foundation Systems (COFS), The University of Western Australia, Crawley, WA, USA.
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M. S. Hossain
M. S. Hossain
*Centre for Offshore Foundation Systems (COFS), The University of Western Australia, Crawley, WA, USA.
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Publisher: Emerald Publishing
Received:
February 23 2015
Accepted:
July 06 2015
Online ISSN: 1751-7656
Print ISSN: 0016-8505
© 2015 Thomas Telford Ltd
2015
Geotechnique (2015) 65 (12): 1029–1037.
Article history
Received:
February 23 2015
Accepted:
July 06 2015
Citation
Kim YH, Hossain MS (2015), "Dynamic installation of OMNI-Max anchors in clay: numerical analysis". Geotechnique, Vol. 65 No. 12 pp. 1029–1037, doi: https://doi.org/10.1680/jgeot.15.T.008
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