Application of Dynamic Cone Penetration Test to Gypseous Soils

Dynamic cone penetration test (DCPT) is a fast, economical and easy to conduct. It is widely used to assess the strength of natural and compacted soils. The device is introduced in the 1950s. However, it was newly introduced in Iraq. This study aims to evaluate the potentials of DCP in geotechnical...

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Main Authors: Ahmed A. H. Al-Obaidi, Qudama A. A. Al-Ashoishi
Format: Article
Language:English
Published: Tikrit University 2018-12-01
Series:Tikrit Journal of Engineering Sciences
Subjects:
Online Access:http://tj-es.com/vol25no4pa1/
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spelling doaj-d942fa1eca8a4d7c86a9778b766151402020-11-25T00:44:06ZengTikrit UniversityTikrit Journal of Engineering Sciences1813-162X1813-162X2018-12-012541510.25130/tjes.25.4.01Application of Dynamic Cone Penetration Test to Gypseous SoilsAhmed A. H. Al-Obaidi0Qudama A. A. Al-Ashoishi1Civil Engineering Department, College of Engineering, Tikrit University, Iraq.Civil Engineering Department, College of Engineering, Tikrit University, Iraq.Dynamic cone penetration test (DCPT) is a fast, economical and easy to conduct. It is widely used to assess the strength of natural and compacted soils. The device is introduced in the 1950s. However, it was newly introduced in Iraq. This study aims to evaluate the potentials of DCP in geotechnical explorations in the gypseous soil since it covers a large area of the country and to obtain correlations with the California bearing ratios (CBR) and investigating the effect of gypsum on the CBR-DCP relationship. Field and Laboratory tests were conducted on soil sample retrieved from six sites with different gypsum contents (28-41) %. Laboratory tests include performing CBR and DCP tests in a cylindrical mold. A statistical analysis of the results shows that gypsum content is an affecting factor on DCP and good CBR-DCP correlations on gypsum content were obtained.http://tj-es.com/vol25no4pa1/Dynamic Cone Penetrometer (DCP)California bearing ratio (CBR)gypseous soilpenetration rate (PR).
collection DOAJ
language English
format Article
sources DOAJ
author Ahmed A. H. Al-Obaidi
Qudama A. A. Al-Ashoishi
spellingShingle Ahmed A. H. Al-Obaidi
Qudama A. A. Al-Ashoishi
Application of Dynamic Cone Penetration Test to Gypseous Soils
Tikrit Journal of Engineering Sciences
Dynamic Cone Penetrometer (DCP)
California bearing ratio (CBR)
gypseous soil
penetration rate (PR).
author_facet Ahmed A. H. Al-Obaidi
Qudama A. A. Al-Ashoishi
author_sort Ahmed A. H. Al-Obaidi
title Application of Dynamic Cone Penetration Test to Gypseous Soils
title_short Application of Dynamic Cone Penetration Test to Gypseous Soils
title_full Application of Dynamic Cone Penetration Test to Gypseous Soils
title_fullStr Application of Dynamic Cone Penetration Test to Gypseous Soils
title_full_unstemmed Application of Dynamic Cone Penetration Test to Gypseous Soils
title_sort application of dynamic cone penetration test to gypseous soils
publisher Tikrit University
series Tikrit Journal of Engineering Sciences
issn 1813-162X
1813-162X
publishDate 2018-12-01
description Dynamic cone penetration test (DCPT) is a fast, economical and easy to conduct. It is widely used to assess the strength of natural and compacted soils. The device is introduced in the 1950s. However, it was newly introduced in Iraq. This study aims to evaluate the potentials of DCP in geotechnical explorations in the gypseous soil since it covers a large area of the country and to obtain correlations with the California bearing ratios (CBR) and investigating the effect of gypsum on the CBR-DCP relationship. Field and Laboratory tests were conducted on soil sample retrieved from six sites with different gypsum contents (28-41) %. Laboratory tests include performing CBR and DCP tests in a cylindrical mold. A statistical analysis of the results shows that gypsum content is an affecting factor on DCP and good CBR-DCP correlations on gypsum content were obtained.
topic Dynamic Cone Penetrometer (DCP)
California bearing ratio (CBR)
gypseous soil
penetration rate (PR).
url http://tj-es.com/vol25no4pa1/
work_keys_str_mv AT ahmedahalobaidi applicationofdynamicconepenetrationtesttogypseoussoils
AT qudamaaaalashoishi applicationofdynamicconepenetrationtesttogypseoussoils
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