Single Piles and Pile Groups Capacity in Unsaturated Sandy Clay Based on Laboratory Test

Pile capacity is one of the controlling factors in the foundation design. In this study, compression and tension tests were carried out on model piles driven in sandy clay in a test box. The diameter of concrete single-pile models was 16 mm, with ratios of 6, 10, 15 and 20 for pile length (L) to dia...

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Main Authors: Pujiastuti, Heni, Rifa'I, Ahmad, Adi, Agus Darmawan, Fathani, Teuku Faisal
Format: Article PeerReviewed
Language:English
Published: Universiti Teknologi Malaysia 2022
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Online Access:https://repository.ugm.ac.id/282107/1/Pujiastuti%20et%20al.%20-%202022%20-%20Single%20piles%20and%20pile%20groups%20capacity%20in%20unsaturat.pdf
https://repository.ugm.ac.id/282107/
https://journals.utm.my/aej/article/view/17520/7863
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spelling id-ugm-repo.2821072023-11-30T07:31:51Z https://repository.ugm.ac.id/282107/ Single Piles and Pile Groups Capacity in Unsaturated Sandy Clay Based on Laboratory Test Pujiastuti, Heni Rifa'I, Ahmad Adi, Agus Darmawan Fathani, Teuku Faisal Civil Engineering not elsewhere classified Pile capacity is one of the controlling factors in the foundation design. In this study, compression and tension tests were carried out on model piles driven in sandy clay in a test box. The diameter of concrete single-pile models was 16 mm, with ratios of 6, 10, 15 and 20 for pile length (L) to diameter (d). The diameter and length of concrete pile group models were 10 mm and 200 mm, respectively, with four different configuration groups, i.e., single pile, two piles (2×1), three piles (triangle), and four piles (2×2). The sandy clay was prepared in three different water contents of 17.40, 23.44, and 27.86. The capacities of the single piles and pile groups subjected to uplift load were smaller than those under compressive load. Increasing the pile length to the ratio of diameter (L/d) and matric suction resulted in increased capacity of single piles subject to uplifting and compressive loads. The pile groups' capacity depended on both the matric suction and the pile number in a group. The pile groups' compressive capacity in a condition of unsaturated soil (with the matric suction of soil of 73.67 kPa) increased by 294.96-346.39 when compared to those in saturated soil conditions (with the matric suction of soil of 2.727 kPa). © 2022 Penerbit UTM Press. All rights reserved. Universiti Teknologi Malaysia 2022 Article PeerReviewed application/pdf en https://repository.ugm.ac.id/282107/1/Pujiastuti%20et%20al.%20-%202022%20-%20Single%20piles%20and%20pile%20groups%20capacity%20in%20unsaturat.pdf Pujiastuti, Heni and Rifa'I, Ahmad and Adi, Agus Darmawan and Fathani, Teuku Faisal (2022) Single Piles and Pile Groups Capacity in Unsaturated Sandy Clay Based on Laboratory Test. ASEAN Engineering Journal, 12 (1). 165 -171. ISSN 2586-9159 https://journals.utm.my/aej/article/view/17520/7863
institution Universitas Gadjah Mada
building UGM Library
continent Asia
country Indonesia
Indonesia
content_provider UGM Library
collection Repository Civitas UGM
language English
topic Civil Engineering not elsewhere classified
spellingShingle Civil Engineering not elsewhere classified
Pujiastuti, Heni
Rifa'I, Ahmad
Adi, Agus Darmawan
Fathani, Teuku Faisal
Single Piles and Pile Groups Capacity in Unsaturated Sandy Clay Based on Laboratory Test
description Pile capacity is one of the controlling factors in the foundation design. In this study, compression and tension tests were carried out on model piles driven in sandy clay in a test box. The diameter of concrete single-pile models was 16 mm, with ratios of 6, 10, 15 and 20 for pile length (L) to diameter (d). The diameter and length of concrete pile group models were 10 mm and 200 mm, respectively, with four different configuration groups, i.e., single pile, two piles (2×1), three piles (triangle), and four piles (2×2). The sandy clay was prepared in three different water contents of 17.40, 23.44, and 27.86. The capacities of the single piles and pile groups subjected to uplift load were smaller than those under compressive load. Increasing the pile length to the ratio of diameter (L/d) and matric suction resulted in increased capacity of single piles subject to uplifting and compressive loads. The pile groups' capacity depended on both the matric suction and the pile number in a group. The pile groups' compressive capacity in a condition of unsaturated soil (with the matric suction of soil of 73.67 kPa) increased by 294.96-346.39 when compared to those in saturated soil conditions (with the matric suction of soil of 2.727 kPa). © 2022 Penerbit UTM Press. All rights reserved.
format Article
PeerReviewed
author Pujiastuti, Heni
Rifa'I, Ahmad
Adi, Agus Darmawan
Fathani, Teuku Faisal
author_facet Pujiastuti, Heni
Rifa'I, Ahmad
Adi, Agus Darmawan
Fathani, Teuku Faisal
author_sort Pujiastuti, Heni
title Single Piles and Pile Groups Capacity in Unsaturated Sandy Clay Based on Laboratory Test
title_short Single Piles and Pile Groups Capacity in Unsaturated Sandy Clay Based on Laboratory Test
title_full Single Piles and Pile Groups Capacity in Unsaturated Sandy Clay Based on Laboratory Test
title_fullStr Single Piles and Pile Groups Capacity in Unsaturated Sandy Clay Based on Laboratory Test
title_full_unstemmed Single Piles and Pile Groups Capacity in Unsaturated Sandy Clay Based on Laboratory Test
title_sort single piles and pile groups capacity in unsaturated sandy clay based on laboratory test
publisher Universiti Teknologi Malaysia
publishDate 2022
url https://repository.ugm.ac.id/282107/1/Pujiastuti%20et%20al.%20-%202022%20-%20Single%20piles%20and%20pile%20groups%20capacity%20in%20unsaturat.pdf
https://repository.ugm.ac.id/282107/
https://journals.utm.my/aej/article/view/17520/7863
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