Ground Improvement in Deep Waters Using Dynamic Replacement

Dynamic Replacement is a ground improvement technique used for treating soft compressible cohesive soils. It has been used in numerous land projects and a number of offshore works with seabed as deep as 15 m below sea level. Recently, works of similar nature was carried out in Southeast Asia with th...

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Main Authors: Hamidi, Babak, Nikraz, Hamid, Yee, K., Varaksin, S., Wong, L.
Other Authors: Jin S. Chung
Format: Conference Paper
Published: ISOPE 2010
Online Access:http://hdl.handle.net/20.500.11937/13042
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author Hamidi, Babak
Nikraz, Hamid
Yee, K.
Varaksin, S.
Wong, L.
author2 Jin S. Chung
author_facet Jin S. Chung
Hamidi, Babak
Nikraz, Hamid
Yee, K.
Varaksin, S.
Wong, L.
author_sort Hamidi, Babak
building Curtin Institutional Repository
collection Online Access
description Dynamic Replacement is a ground improvement technique used for treating soft compressible cohesive soils. It has been used in numerous land projects and a number of offshore works with seabed as deep as 15 m below sea level. Recently, works of similar nature was carried out in Southeast Asia with the intention of exploring the possibility of treating soils in deeper waters. In this case, the seabed was 30 m below sea level, and to the knowledge of the authors, is a world record as the deepest Offshore Dynamic Replacement or Dynamic Compaction works. The pressuremeter test was used to verify the results and to estimate the soil parameters.
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format Conference Paper
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institution Curtin University Malaysia
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publishDate 2010
publisher ISOPE
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spelling curtin-20.500.11937-130422023-01-13T07:56:28Z Ground Improvement in Deep Waters Using Dynamic Replacement Hamidi, Babak Nikraz, Hamid Yee, K. Varaksin, S. Wong, L. Jin S. Chung Raghavan Ayer Simon Prinsenberg Seok Won Hong Ivar Langen Dynamic Replacement is a ground improvement technique used for treating soft compressible cohesive soils. It has been used in numerous land projects and a number of offshore works with seabed as deep as 15 m below sea level. Recently, works of similar nature was carried out in Southeast Asia with the intention of exploring the possibility of treating soils in deeper waters. In this case, the seabed was 30 m below sea level, and to the knowledge of the authors, is a world record as the deepest Offshore Dynamic Replacement or Dynamic Compaction works. The pressuremeter test was used to verify the results and to estimate the soil parameters. 2010 Conference Paper http://hdl.handle.net/20.500.11937/13042 ISOPE fulltext
spellingShingle Hamidi, Babak
Nikraz, Hamid
Yee, K.
Varaksin, S.
Wong, L.
Ground Improvement in Deep Waters Using Dynamic Replacement
title Ground Improvement in Deep Waters Using Dynamic Replacement
title_full Ground Improvement in Deep Waters Using Dynamic Replacement
title_fullStr Ground Improvement in Deep Waters Using Dynamic Replacement
title_full_unstemmed Ground Improvement in Deep Waters Using Dynamic Replacement
title_short Ground Improvement in Deep Waters Using Dynamic Replacement
title_sort ground improvement in deep waters using dynamic replacement
url http://hdl.handle.net/20.500.11937/13042