土工基础 ›› 2026, Vol. 40 ›› Issue (2): 252-256.

• 专题论述 • 上一篇    下一篇

悬挂式止水帷幕对坑外最大水位降深的计算

唐 红,黎 洁   

  1. (武汉科技大学城市建设学院,武汉 430070)
  • 收稿日期:2023-12-13 修回日期:2024-04-03 出版日期:2026-04-30 发布日期:2026-04-23
  • 作者简介:唐红(1967-),女,博士,教授级高级工程师,研究方向为岩土与地下工程。

Estimate the Maximum Water Level Drop Depth Outside the Pit by Suspended Watertight Curtains

TANG Hong, LI Jie   

  1. (College of Urban Construction, Wuhan University of Science and Technology, Wuhan 430070)
  • Received:2023-12-13 Revised:2024-04-03 Online:2026-04-30 Published:2026-04-23

摘要: 以某潜水含水层较深的悬挂式止水帷幕基坑为背景,通过理论分析和有限元计算验证,研究基坑降水后止水帷幕对坑外最大水位降深处水头的影响。通过将基坑等效为一个大的降水井,将基坑内的涌水量计算公式带入降水井单井降水量计算公式,得到基坑降水后的坑外最大水位降深处的水头。随着基坑半径与潜水含水层厚度比值的不断增大,悬挂式止水帷幕的止水效果呈现先增强后减弱的趋势,且在其比值为0.7时,止水帷幕的止水效果最大。基坑半径与潜水含水层厚度比值为0.7~1.6之间时,理论计算结果与有限元计算结果比较接近,且在其比值为1.3时结果基本吻合。在基坑半径与潜水含水层厚度的比值下,理论公式和有限元计算结果的止水效果变化规律相同,而有限元计算结果略微偏大。通过对最小渗流路径的修正,修正后的结果比原理论计算结果更接近有限元计算结果。


关键词: 止水帷幕, 有限元, 基坑, 降水井, 最大水位降深

Abstract: A suspended watertight curtain pit with deeper submersible aquifer is presented as a case history. Throughout the establishment of theoretical formula analysis and finite element verification, the effect of excavation descending on the head at the depth of the maximum water level drop outside the pit, and analyze the change rule of the embedding depth of water stop curtain on the head at the depth of the maximum water level drop outside the excavation under the different ratios of the pit radius and the submersible aquifer. The head at the depth of maximum water level drops outside the pit after the excavation dewatering is obtained by equating the pit to a large dewatering well and bringing the formula for the influx of water in the pit into the formula for the pumping capacity of a single well of a pumping well. With the increasing ratio of pit radius and submerged aquifer thickness, the water-stopping efficiency of the suspended watertight curtain is first strengthened and then weakened until it stabilizes. In the ratio of pit radius and submerged aquifer is about 0.7, the watertight curtain water-stopping efficiency reaches its maximum. The theoretical formula estimation results in the pit radius and submersible aquifer thickness ratio of 0.7~1.6 and the finite element analysis results are closer, and in its ratio of 1.3 when the results are basically consistent. Under the ratio of pit radius and submerged aquifer thickness, the change rule of water stopping energy efficiency is the same in the theoretical formula and the finite element analysis results, while the finite element analysis results are slightly larger. By correcting the minimum seepage path the corrected results are closer to the finite element analysis than the original theoretical formulate.

Key words: Watertight Curtain, Finite Element, Deep Excavation, Dewatering Wells, Maximum Water Level Drop Depth

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