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超深圆形基坑群井分层抽水试验及渗透系数反演分析
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作者:
作者单位:

保利长大工程有限公司,广东 广州 510000

作者简介:

罗人昆,男,副高级工程师. E-mail:308808662@qq.com

通讯作者:

王杰,男,工程师. E-mail:2675867013@qq.com

中图分类号:

U416

基金项目:

国家自然科学基金资助项目(编号:52178311,51408066);江西省交通运输厅科技项目(编号:2021H0005);湖南省教育厅科学研究项目(编号:20A001)


Stratified Multi-Well Pumping Tests and Back-Analysis of Hydraulic Conductivity in Ultra-Deep Circular Foundation Pits
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Affiliation:

Poly Changda Engineering Co., Ltd., Guangzhou, Guangdong 510000, China

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    摘要:

    基坑开挖前降水是预防坑顶边坡失稳、坑周渗水、坑底突涌等工程隐患的关键举措,渗透系数作为降水设计的关键参数直接影响基坑工程风险控制。该文以狮子洋通道东锚碇基坑工程为依托,开展单井抽水试验和群井分层抽水试验,分阶段对坑内降水井和坑外观测井的水位变化进行监测,据此建立了抽水试验的有限差分数值模型,通过经典解析方法获取的目标含水层渗透系数作为数值模型初始参数,并通过反演分析确定各地层渗透系数。结果表明:基坑外观测井水位并未随基坑内部的抽水过程同步下降,这表明圆形地下连续墙的接头处无渗漏情况;坑内各降水井水位降深差异显著,说明后续施工需依据降水井所在地层特性,对抽水设备的功率、运行时间等进行差异化调整,以实现整体均匀的降水效果;现场观测值和重构有限差分模型计算值间相对误差绝对值平均为11.58%,验证了经典解析方法和有限差分模拟相结合方法的可靠性。分析方法可为深基坑工程水文参数反演提供借鉴。

    Abstract:

    Dewatering prior to foundation pit excavation is a critical measure to prevent engineering hazards such as slope instability at the pit top, seepage around the pit, and bottom heave. As a key parameter in dewatering design, hydraulic conductivity directly influences the risk control in foundation pit engineering. Based on the east anchor foundation pit project of the Shiziyang Passageway, single-well pumping tests and stratified multi-well pumping tests were conducted. The water level variations in the internal dewatering wells and the external observation wells were monitored in stages. Accordingly, a finite difference numerical model for the pumping tests was established. The hydraulic conductivities of the target aquifers obtained through the classical analytical method were used as the initial parameters of the numerical model, and the hydraulic conductivities of each stratum were determined through back-analysis. The results indicate that the water levels in the external observation wells do not decline synchronously with the internal pumping process, which demonstrates that there is no leakage at the joints of the circular diaphragm wall. The significant differences in water level drawdown among the internal dewatering wells suggest that the power and operation time of the pumping equipment should be differentially adjusted based on the characteristics of the strata where the dewatering wells are located, to achieve an overall uniform dewatering effect. The absolute value of the relative error between the field observation values and the calculated values of the reconstructed finite difference model is 11.58% on average, which validates the reliability of the combined classical analytical and finite difference method. This analysis method provides a reference for the back-analysis of hydrogeological parameters in deep foundation pit engineering.

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引用本文

罗人昆,王杰.超深圆形基坑群井分层抽水试验及渗透系数反演分析[J].中外公路,2026,46(3):27-35.
LUO Renkun, WANG Jie. Stratified Multi-Well Pumping Tests and Back-Analysis of Hydraulic Conductivity in Ultra-Deep Circular Foundation Pits[J]. Journal of China & Foreign Highway,2026,46(3):27-35.

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  • 收稿日期:2025-03-11
  • 最后修改日期:2025-05-10
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  • 在线发布日期: 2026-06-27
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