建筑荷载作用下颗粒桩尺寸参数对软土地基变形响应的敏感性

IF 2.2 Q2 ENGINEERING, MULTIDISCIPLINARY Applications in engineering science Pub Date : 2023-12-11 DOI:10.1016/j.apples.2023.100169
Adamu Beyene, Ruhama Beyene, Hailemariam Merka
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引用次数: 0

摘要

颗粒桩是一种行之有效的土壤改良机制,尤其适用于加固支撑轻型结构的可压缩土壤。颗粒桩的改良性能受多种因素的影响,包括尺寸参数(桩长、桩间距和桩径)。这三个尺寸参数对加固软土变形响应的影响已被广泛报道。然而,影响软土变形的最大参数尚未明确。显然,这些尺寸参数对石柱在减少土壤变形方面的性能影响并不相同。因此,本研究进行了对比分析,以找出对石柱加固软弱地层变形最敏感的尺寸参数。研究采用基于有限元的参数数值分析方法,模拟了用一组颗粒桩加固的薄弱地层,该地层支撑着轻型建筑。在参数研究中,考虑了每个参数(直径、间距和长度)的五个尺寸。这些尺寸特意按统一的百分比增加而变化。现场沉降监测数据用于跟踪场地的变形响应并验证有限元结果。数值分析表明,模拟结果与现场沉降监测数据非常吻合。从敏感性角度来看,柱间距是影响加固软土变形的最大控制和影响参数。同样,柱长是对地面变形最不敏感的尺寸参数。
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Sensitivity of granular pile dimension parameters to deformation response of soft ground under building load

Granular pile is one of the proven soil improvement mechanisms applied especially for reinforcement of compressible soils supporting light structures. The improvement performance of granular piles is influenced by various factors including the dimension parameters (length, spacing and diameter of the piles). The influence of these three dimension parameters on deformation response of reinforced weak soil has widely been reported. However, the most influential parameter affecting deformation of the weak soil has not been clearly identified. Apparently, these dimension parameters do not equally influence the performance of stone columns in lessening soil deformation. Hence, comparative analysis was carried out in the current study to find out the dimension parameter to which deformation of stone column reinforced weak ground is most sensitive. Finite element based parametric numerical analysis was conducted to simulate the weak ground reinforced with a group of granular piles supporting light weight building. For the parametric study, five dimensions for each parameter (diameter, spacing and length) were considered. The dimensions were purposely varied by uniform percentage increase. Field settlement monitoring data was used to track deformation response of the site and validate the finite element results. The numerical analysis reveals that the simulation results have good agreement with the field settlement monitoring data. From sensitivity view point, column spacing was found to be the most controlling and influential parameter affecting deformation of the reinforced weak soil. Similarly, column length is the dimension parameter to which ground deformation is least sensitive.

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来源期刊
Applications in engineering science
Applications in engineering science Mechanical Engineering
CiteScore
3.60
自引率
0.00%
发文量
0
审稿时长
68 days
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