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水位波动条件下有封底基坑渗流场孔压解析解

余俊 张志中 郑靖凡 和振

岩土力学2023,Vol.44Issue(12):3415-3423,9.
岩土力学2023,Vol.44Issue(12):3415-3423,9.DOI:10.16285/j.rsm.2023.0322

水位波动条件下有封底基坑渗流场孔压解析解

Analytical solution of pore pressure in seepage field of foundation pit with a sealed bottom under water level fluctuation

余俊 1张志中 1郑靖凡 1和振1

作者信息

  • 1. 中南大学土木工程学院,湖南长沙 410075
  • 折叠

摘要

Abstract

The pore pressure response of two-dimensional seepage field of a foundation pit with a sealed bottom under the condition of water level fluctuation is studied analytically.The soil around the pit is divided into several regions,and the excess pore water pressure response distribution in each region is expressed in the form of a series by applying the superposition principle and the separation variable method,and the coefficient matrix is solved by combining the inter-region boundary conditions and the continuity conditions to obtain the explicit analytical solution of the excess pore water pressure distribution of the two-dimensional seepage field in the pit with a capping layer under the fluctuation of water level.The results of the analytical solution are compared with the numerical results,and the correctness of the analytical method is verified.Based on this analytical solution,calculation formulae for the outflow ratio drop and water inflow caused by water level fluctuations are further provided.The sealing effect of the bottom layer and influences of the bottom layer thickness and permeability coefficient changes are discussed through a pit project example.The results show that the outflow ratio drop and single width seepage discharge are increased,but the rate of increase reduces as the bottom layer thickness decreases and the permeability coefficient increases.

关键词

解析解/基坑/渗流/水位波动/孔压

Key words

analytical solution/foundation pit/seepage flow/water level fluctuation/pore pressure

分类

土木建筑

引用本文复制引用

余俊,张志中,郑靖凡,和振..水位波动条件下有封底基坑渗流场孔压解析解[J].岩土力学,2023,44(12):3415-3423,9.

基金项目

国家自然科学基金(No.52078496).This work was supported by the National Natural Science Foundation of China(52078496). (No.52078496)

岩土力学

OACSCDCSTPCD

1000-7598

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