Computer simulation of underground blast response of pile in saturated soil
This paper treats the blast response of a pile foundation in saturated sand using explicit nonlinear finite element analysis, considering complex material behavior of soil and soil–pile interaction. Blast wave propagation in the soil is studied and the horizontal deformation of pile and effective st...
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sg-ntu-dr.10356-815622020-03-07T11:43:32Z Computer simulation of underground blast response of pile in saturated soil Jayasinghe, Laddu Bhagya Thambiratnam, D. P. Perera, N. Jayasooriya, J. H. A. R. School of Civil and Environmental Engineering Underground explosion Numerical simulation This paper treats the blast response of a pile foundation in saturated sand using explicit nonlinear finite element analysis, considering complex material behavior of soil and soil–pile interaction. Blast wave propagation in the soil is studied and the horizontal deformation of pile and effective stresses in the pile are presented. Results indicate that the upper part of the pile to be vulnerable and the pile response decays with distance from the explosive. The findings of this research provide valuable information on the effects of underground explosions on pile foundation and will guide future development, validation and application of computer models. Accepted version 2017-04-13T07:41:24Z 2019-12-06T14:33:49Z 2017-04-13T07:41:24Z 2019-12-06T14:33:49Z 2013 2013 Journal Article Jayasinghe, L. B., Thambiratnam, D. P., Perera, N., & Jayasooriya, J. H. A. R. (2013). Computer simulation of underground blast response of pile in saturated soil. Computers and Structures, 120, 86-95. 0045-7949 https://hdl.handle.net/10356/81562 http://hdl.handle.net/10220/42263 10.1016/j.compstruc.2013.02.016 185210 en Computers and Structures © 2013 Elsevier Ltd. This is the author created version of a work that has been peer reviewed and accepted for publication by Computers and Structures, Elsevier Ltd. It incorporates referee’s comments but changes resulting from the publishing process, such as copyediting, structural formatting, may not be reflected in this document. The published version is available at: [http://doi.org/10.1016/j.compstruc.2013.02.016]. 22 p. application/pdf |
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Underground explosion Numerical simulation |
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Underground explosion Numerical simulation Jayasinghe, Laddu Bhagya Thambiratnam, D. P. Perera, N. Jayasooriya, J. H. A. R. Computer simulation of underground blast response of pile in saturated soil |
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This paper treats the blast response of a pile foundation in saturated sand using explicit nonlinear finite element analysis, considering complex material behavior of soil and soil–pile interaction. Blast wave propagation in the soil is studied and the horizontal deformation of pile and effective stresses in the pile are presented. Results indicate that the upper part of the pile to be vulnerable and the pile response decays with distance from the explosive. The findings of this research provide valuable information on the effects of underground explosions on pile foundation and will guide future development, validation and application of computer models. |
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School of Civil and Environmental Engineering |
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School of Civil and Environmental Engineering Jayasinghe, Laddu Bhagya Thambiratnam, D. P. Perera, N. Jayasooriya, J. H. A. R. |
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Article |
author |
Jayasinghe, Laddu Bhagya Thambiratnam, D. P. Perera, N. Jayasooriya, J. H. A. R. |
author_sort |
Jayasinghe, Laddu Bhagya |
title |
Computer simulation of underground blast response of pile in saturated soil |
title_short |
Computer simulation of underground blast response of pile in saturated soil |
title_full |
Computer simulation of underground blast response of pile in saturated soil |
title_fullStr |
Computer simulation of underground blast response of pile in saturated soil |
title_full_unstemmed |
Computer simulation of underground blast response of pile in saturated soil |
title_sort |
computer simulation of underground blast response of pile in saturated soil |
publishDate |
2017 |
url |
https://hdl.handle.net/10356/81562 http://hdl.handle.net/10220/42263 |
_version_ |
1681039055010136064 |