Effect of geometric characteristics of helical piles on the lateral displacement in sandy slopes by loading surcharge
Helical piles are a group of deep foundations with a good bearing capacity against axial and lateral forces. Despite extensive research on the performance on flat ground, fewer studies have been conducted on the performance of helical piles on slopes. Hence, in the present research, the lateral disp...
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Elsevier
2025-03-01
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author | Mir abas Bahri Mahyar Arabani |
author_facet | Mir abas Bahri Mahyar Arabani |
author_sort | Mir abas Bahri |
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description | Helical piles are a group of deep foundations with a good bearing capacity against axial and lateral forces. Despite extensive research on the performance on flat ground, fewer studies have been conducted on the performance of helical piles on slopes. Hence, in the present research, the lateral displacement of helical piles on the sloping ground by loading surcharge was investigated. For this purpose, 1g laboratory test models of a reinforced sand slope were constructed with a series of cylindrical and helical piles with different pitches and diameters as well as numerical simulations. PLAXIS 3D software was used along with the finite element method and the hardening soil model to assess the effects of geometric characteristics of helical piles on lateral displacement in a sandy slope. According to the laboratory results, the vertical load on sandy slopes was up to 44 % higher than that of cylindrical piles with the same shaft diameter. Laboratory results also reveal that the vertical load increases by 34, 20, and 12 %, respectively by increasing the helix depth, decreasing the helix pitch, and installing the piles in a slanted manner. Furthermore, considering the results of verification through numerical analysis, the vertical load on the slope crest when reinforced with helical piles was up to 47 % higher than when reinforced with cylindrical piles with the same shaft diameter. In numerical analysis, the vertical load on the slope crest increased by 37, 25, and 15 %, respectively with increasing helix depth, decreasing helix pitch, and inclined installation of piles. Overall, the findings of this study revealed that helical piles exhibited superior performance compared to cylindrical piles, making them a suitable alternative for practical deployment. |
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id | doaj-art-f5d89a5717b0445ba306095e60eeac62 |
institution | Kabale University |
issn | 2590-1230 |
language | English |
publishDate | 2025-03-01 |
publisher | Elsevier |
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series | Results in Engineering |
spelling | doaj-art-f5d89a5717b0445ba306095e60eeac622025-01-05T04:28:36ZengElsevierResults in Engineering2590-12302025-03-0125103896Effect of geometric characteristics of helical piles on the lateral displacement in sandy slopes by loading surchargeMir abas Bahri0Mahyar Arabani1Geotechnical Engineering, University of Guilan, Rasht, Iran; Department of Civil Engineering, University of Guilan, Rasht, IranDepartment of Civil Engineering, University of Guilan, Rasht, Postal Code: 4199613776, Iran; Department of Civil Engineering, University of Guilan, Rasht, Iran; Corresponding author.Helical piles are a group of deep foundations with a good bearing capacity against axial and lateral forces. Despite extensive research on the performance on flat ground, fewer studies have been conducted on the performance of helical piles on slopes. Hence, in the present research, the lateral displacement of helical piles on the sloping ground by loading surcharge was investigated. For this purpose, 1g laboratory test models of a reinforced sand slope were constructed with a series of cylindrical and helical piles with different pitches and diameters as well as numerical simulations. PLAXIS 3D software was used along with the finite element method and the hardening soil model to assess the effects of geometric characteristics of helical piles on lateral displacement in a sandy slope. According to the laboratory results, the vertical load on sandy slopes was up to 44 % higher than that of cylindrical piles with the same shaft diameter. Laboratory results also reveal that the vertical load increases by 34, 20, and 12 %, respectively by increasing the helix depth, decreasing the helix pitch, and installing the piles in a slanted manner. Furthermore, considering the results of verification through numerical analysis, the vertical load on the slope crest when reinforced with helical piles was up to 47 % higher than when reinforced with cylindrical piles with the same shaft diameter. In numerical analysis, the vertical load on the slope crest increased by 37, 25, and 15 %, respectively with increasing helix depth, decreasing helix pitch, and inclined installation of piles. Overall, the findings of this study revealed that helical piles exhibited superior performance compared to cylindrical piles, making them a suitable alternative for practical deployment.http://www.sciencedirect.com/science/article/pii/S259012302402139XHelical pileSand slopeLateral bearing capacityPhysical modelNumerical simulation |
spellingShingle | Mir abas Bahri Mahyar Arabani Effect of geometric characteristics of helical piles on the lateral displacement in sandy slopes by loading surcharge Results in Engineering Helical pile Sand slope Lateral bearing capacity Physical model Numerical simulation |
title | Effect of geometric characteristics of helical piles on the lateral displacement in sandy slopes by loading surcharge |
title_full | Effect of geometric characteristics of helical piles on the lateral displacement in sandy slopes by loading surcharge |
title_fullStr | Effect of geometric characteristics of helical piles on the lateral displacement in sandy slopes by loading surcharge |
title_full_unstemmed | Effect of geometric characteristics of helical piles on the lateral displacement in sandy slopes by loading surcharge |
title_short | Effect of geometric characteristics of helical piles on the lateral displacement in sandy slopes by loading surcharge |
title_sort | effect of geometric characteristics of helical piles on the lateral displacement in sandy slopes by loading surcharge |
topic | Helical pile Sand slope Lateral bearing capacity Physical model Numerical simulation |
url | http://www.sciencedirect.com/science/article/pii/S259012302402139X |
work_keys_str_mv | AT mirabasbahri effectofgeometriccharacteristicsofhelicalpilesonthelateraldisplacementinsandyslopesbyloadingsurcharge AT mahyararabani effectofgeometriccharacteristicsofhelicalpilesonthelateraldisplacementinsandyslopesbyloadingsurcharge |