The horizontal load test on pressure-injected piles in damped subsiding Soils

In connection with the needs of the present, the question of the optimal design of building foundations, taking into account the regional characteristics of loess-like silty clay soils, common in Mongolia, becomes relevant. In recent years, in the Orkhon-Selenginsky region and especially in the Dark...

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Main Authors: Setev Nyamdorj, Buyankhishig Basbish, Dalai Dashjamts, Mangushev Rashid
Format: Article
Language:English
Published: EDP Sciences 2023-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/08/e3sconf_afe2023_02027.pdf
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author Setev Nyamdorj
Buyankhishig Basbish
Dalai Dashjamts
Mangushev Rashid
author_facet Setev Nyamdorj
Buyankhishig Basbish
Dalai Dashjamts
Mangushev Rashid
author_sort Setev Nyamdorj
collection DOAJ
description In connection with the needs of the present, the question of the optimal design of building foundations, taking into account the regional characteristics of loess-like silty clay soils, common in Mongolia, becomes relevant. In recent years, in the Orkhon-Selenginsky region and especially in the Darkhan region, industrial and civil buildings and engineering structures are being actively built up and planned to regulate the problems of overpopulation and smoke in the city of Ulaanbaatar, Mongolia. The regularity of the process of changing the stress-strain state of loess-like subsidence soils of the base due to technogenic moistening is subject to the general theory of subsidence soil mechanics, but each region of the world has its own distinctive feature depending on territorial and climatic conditions. Settling clayey soils of Mongolia in their natural state have a relatively high content of water-soluble and slightly soluble carbonate and other salt compounds and, due to their cemented and crystallized structural bonds, they have relatively high mechanical properties, but the mechanical properties, due to the weakening of structural bonds during soaking, sharply decrease to a value of c =7.0…10.2 kPa, φ=16….÷20°, E=3.5…4.5 MPa and subsidence begins depending on the type of soil at pressure Р=0,15 MPA and W= ( 6.7…8.6)% or W_sat, while the relative subsidence index is ε_sl>0.01. At pressure Р=0,2MPa and W=(6.1…7.6)%, subsidence begins, and at pressure Р=0.25MPa and W=(5.2…6.9)% drawdown begins. These moisture values are calculated respectively at the given pressures as the initial settling moisture W_sl. This article discusses the results of field tests of bored piles for a horizontal load, taking into account the moistening of the subsidence soil of the foundation of buildings and structures.
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spelling doaj.art-5abb18d7ece94f64ae3ca58c0ce6a7562023-03-09T11:17:29ZengEDP SciencesE3S Web of Conferences2267-12422023-01-013710202710.1051/e3sconf/202337102027e3sconf_afe2023_02027The horizontal load test on pressure-injected piles in damped subsiding SoilsSetev Nyamdorj0Buyankhishig Basbish1Dalai Dashjamts2Mangushev Rashid3Mongolian National Technical University, dist. Songino hkairkhanMongolian University of Science and Technology, Instituty of Technology DarkhanMongolian University of Science and Technology, School of Civil Engineering and ArchitectureSaint-Petersburg State University of Architecture and Civil EngineeringIn connection with the needs of the present, the question of the optimal design of building foundations, taking into account the regional characteristics of loess-like silty clay soils, common in Mongolia, becomes relevant. In recent years, in the Orkhon-Selenginsky region and especially in the Darkhan region, industrial and civil buildings and engineering structures are being actively built up and planned to regulate the problems of overpopulation and smoke in the city of Ulaanbaatar, Mongolia. The regularity of the process of changing the stress-strain state of loess-like subsidence soils of the base due to technogenic moistening is subject to the general theory of subsidence soil mechanics, but each region of the world has its own distinctive feature depending on territorial and climatic conditions. Settling clayey soils of Mongolia in their natural state have a relatively high content of water-soluble and slightly soluble carbonate and other salt compounds and, due to their cemented and crystallized structural bonds, they have relatively high mechanical properties, but the mechanical properties, due to the weakening of structural bonds during soaking, sharply decrease to a value of c =7.0…10.2 kPa, φ=16….÷20°, E=3.5…4.5 MPa and subsidence begins depending on the type of soil at pressure Р=0,15 MPA and W= ( 6.7…8.6)% or W_sat, while the relative subsidence index is ε_sl>0.01. At pressure Р=0,2MPa and W=(6.1…7.6)%, subsidence begins, and at pressure Р=0.25MPa and W=(5.2…6.9)% drawdown begins. These moisture values are calculated respectively at the given pressures as the initial settling moisture W_sl. This article discusses the results of field tests of bored piles for a horizontal load, taking into account the moistening of the subsidence soil of the foundation of buildings and structures.https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/08/e3sconf_afe2023_02027.pdf
spellingShingle Setev Nyamdorj
Buyankhishig Basbish
Dalai Dashjamts
Mangushev Rashid
The horizontal load test on pressure-injected piles in damped subsiding Soils
E3S Web of Conferences
title The horizontal load test on pressure-injected piles in damped subsiding Soils
title_full The horizontal load test on pressure-injected piles in damped subsiding Soils
title_fullStr The horizontal load test on pressure-injected piles in damped subsiding Soils
title_full_unstemmed The horizontal load test on pressure-injected piles in damped subsiding Soils
title_short The horizontal load test on pressure-injected piles in damped subsiding Soils
title_sort horizontal load test on pressure injected piles in damped subsiding soils
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/08/e3sconf_afe2023_02027.pdf
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