Analysis of the influence of different types of anti-slide piles on lining structures under landslide loading

Abstract Investigating the selection of corresponding support methods for tunnel lining structures with different burial depths under landslide loads has strong practical significance. This paper analyzes the influence of anti-slide piles on the lining support of tunnels at different depths through...

Full description

Saved in:
Bibliographic Details
Main Authors: Tao Li, Jun Liang, Xueyu Wu
Format: Article
Language:English
Published: Nature Portfolio 2025-01-01
Series:Scientific Reports
Subjects:
Online Access:https://doi.org/10.1038/s41598-024-84699-0
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1841544743755972608
author Tao Li
Jun Liang
Xueyu Wu
author_facet Tao Li
Jun Liang
Xueyu Wu
author_sort Tao Li
collection DOAJ
description Abstract Investigating the selection of corresponding support methods for tunnel lining structures with different burial depths under landslide loads has strong practical significance. This paper analyzes the influence of anti-slide piles on the lining support of tunnels at different depths through scaling experiments combined with numerical simulation methods. The conclusions of this study are as follows: Under the same anti-slide pile cross-sectional conditions, when the tunnel is at a shallower depth (above the slip surface), due to the influence of the landslide load, a significant bias stress phenomenon occurs in the tunnel lining. When the tunnel is buried at a greater depth (below the slip surface), the impact of the anti-slide pile cross-sectional shape and landslide load on the tunnel lining diminishes. The bias stress ratio gradually approaches 1. Under the same tunnel lining burial depth conditions, h-type anti-slide piles exhibit the best anti-slide performance, followed by square piles, with circular anti-slide piles demonstrating relatively poorer performance. However, h-type anti-slide piles also have the highest cost, whereas circular piles are the most cost-effective. An analysis based on value engineering theory indicates that when a tunnel is positioned above the slip surface, square piles or h-type anti-slip piles offer the most cost-effective support. When a tunnel is buried at a greater depth, circular anti-slide piles represent a cost-effective solution. This study holds certain reference significance for the selection of tunnel support methods at different burial depths within tunnel landslide systems.
format Article
id doaj-art-5d1d1c9868684e688c1a40fc7f1e4273
institution Kabale University
issn 2045-2322
language English
publishDate 2025-01-01
publisher Nature Portfolio
record_format Article
series Scientific Reports
spelling doaj-art-5d1d1c9868684e688c1a40fc7f1e42732025-01-12T12:18:36ZengNature PortfolioScientific Reports2045-23222025-01-0115112210.1038/s41598-024-84699-0Analysis of the influence of different types of anti-slide piles on lining structures under landslide loadingTao Li0Jun Liang1Xueyu Wu2College of Mechanical and Electrical Engineering, Mianyang Teachers’ CollegeCollege of Mechanical and Electrical Engineering, Mianyang Teachers’ CollegeCollege of Mechanical and Electrical Engineering, Mianyang Teachers’ CollegeAbstract Investigating the selection of corresponding support methods for tunnel lining structures with different burial depths under landslide loads has strong practical significance. This paper analyzes the influence of anti-slide piles on the lining support of tunnels at different depths through scaling experiments combined with numerical simulation methods. The conclusions of this study are as follows: Under the same anti-slide pile cross-sectional conditions, when the tunnel is at a shallower depth (above the slip surface), due to the influence of the landslide load, a significant bias stress phenomenon occurs in the tunnel lining. When the tunnel is buried at a greater depth (below the slip surface), the impact of the anti-slide pile cross-sectional shape and landslide load on the tunnel lining diminishes. The bias stress ratio gradually approaches 1. Under the same tunnel lining burial depth conditions, h-type anti-slide piles exhibit the best anti-slide performance, followed by square piles, with circular anti-slide piles demonstrating relatively poorer performance. However, h-type anti-slide piles also have the highest cost, whereas circular piles are the most cost-effective. An analysis based on value engineering theory indicates that when a tunnel is positioned above the slip surface, square piles or h-type anti-slip piles offer the most cost-effective support. When a tunnel is buried at a greater depth, circular anti-slide piles represent a cost-effective solution. This study holds certain reference significance for the selection of tunnel support methods at different burial depths within tunnel landslide systems.https://doi.org/10.1038/s41598-024-84699-0Tunnel crossing a landslide; Pile type research; Value engineering
spellingShingle Tao Li
Jun Liang
Xueyu Wu
Analysis of the influence of different types of anti-slide piles on lining structures under landslide loading
Scientific Reports
Tunnel crossing a landslide; Pile type research; Value engineering
title Analysis of the influence of different types of anti-slide piles on lining structures under landslide loading
title_full Analysis of the influence of different types of anti-slide piles on lining structures under landslide loading
title_fullStr Analysis of the influence of different types of anti-slide piles on lining structures under landslide loading
title_full_unstemmed Analysis of the influence of different types of anti-slide piles on lining structures under landslide loading
title_short Analysis of the influence of different types of anti-slide piles on lining structures under landslide loading
title_sort analysis of the influence of different types of anti slide piles on lining structures under landslide loading
topic Tunnel crossing a landslide; Pile type research; Value engineering
url https://doi.org/10.1038/s41598-024-84699-0
work_keys_str_mv AT taoli analysisoftheinfluenceofdifferenttypesofantislidepilesonliningstructuresunderlandslideloading
AT junliang analysisoftheinfluenceofdifferenttypesofantislidepilesonliningstructuresunderlandslideloading
AT xueyuwu analysisoftheinfluenceofdifferenttypesofantislidepilesonliningstructuresunderlandslideloading