Displacement analysis and numerical simulation of pile-anchor retaining structure in deep foundation pit

IF 0.6 Q4 ENGINEERING, MECHANICAL
Xupeng Yin, Hongmei Ni
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引用次数: 0

Abstract

Foundation pit excavation can cause settlement and displacement of surrounding existing buildings and roads. In order to study the influence of soil unloading on the surrounding buildings during pit foundation excavation, the application of a pile-anchor retaining structure in a deep foundation pit was studied, with the deep foundation pit project of Anhui Bright Pearl Mall as the research subject. Through theoretical analysis, field measurements, and FLAC3D numerical simulations, the supporting structure was comprehensively analyzed. A comparison was made between the measured displacement data and the numerical simulation results of the supporting structure and the surrounding environment during the excavation process of the foundation pit. The results indicate that the model results, obtained through the use of the FLAC3D software for numerical simulations, generally align with the field data. This approach can more accurately reflect the evolutionary laws of soil pressure and deformation during the excavation of the foundation pit. The maximum displacement of the horizontal displacement monitoring point in this project's foundation pit is 25.96 mm, which is less than the monitoring alarm value of 30 mm. The horizontal displacement monitoring of the sidewall of the foundation pit is crucial among them. An analysis of the three major causes of numerical deviation provides valuable insights for the design of deep foundation pit supporting structures.
深基坑中桩锚护壁结构的位移分析与数值模拟
基坑开挖会引起周围既有建筑物和道路的沉降和位移。为了研究基坑开挖过程中土体卸荷对周边建筑物的影响,以安徽明珠商城深基坑工程为研究对象,研究了桩锚支护结构在深基坑中的应用。通过理论分析、现场测量和 FLAC3D 数值模拟,对支护结构进行了全面分析。对比了基坑开挖过程中支护结构和周围环境的实测位移数据和数值模拟结果。结果表明,通过使用 FLAC3D 软件进行数值模拟得到的模型结果与现场数据基本一致。这种方法能更准确地反映基坑开挖过程中土体压力和变形的演变规律。本工程基坑水平位移监测点位移最大值为 25.96mm,小于监测报警值 30mm。其中基坑侧壁的水平位移监测至关重要。通过对造成数值偏差的三大原因的分析,为深基坑支护结构的设计提供了有价值的启示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Measurements in Engineering
Journal of Measurements in Engineering ENGINEERING, MECHANICAL-
CiteScore
2.00
自引率
6.20%
发文量
16
审稿时长
16 weeks
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