Applied Mathematics and Mechanics (English Edition) ›› 2008, Vol. 29 ›› Issue (10): 1329-1340 .doi: https://doi.org/10.1007/s10483-008-1008-x

• 论文 • 上一篇    下一篇

非饱和土层一维固结问题的解析解

秦爱芳1;陈光敬2;谈永卫1;孙德安1   

  1. 1.上海大学土木工程系, 上海;
    2.西班牙加泰罗尼亚理工大学, 巴塞罗那
  • 收稿日期:2007-10-15 修回日期:2008-08-18 出版日期:2008-10-01 发布日期:2008-10-01
  • 通讯作者: 秦爱芳

Analytical solution to one-dimensional consolidation in unsaturated soils

QIN Ai-fang1;CHEN Guang-jing2;TAN Yong-wei1;SUN De-an1   

  1. 1. Department of Civil Engineering, Shanghai University, Shanghai 200072, P. R. China; 2. Technical University of Catalunya, Barcelona, 08034, Spain
  • Received:2007-10-15 Revised:2008-08-18 Online:2008-10-01 Published:2008-10-01
  • Contact: QIN Ai-fang

摘要:

本文对一有限厚度,处于一维受荷状态,表面为透水透气面,底面为不透水不透气面的非饱和土层,依据Fredlund的非饱和土一维固结理论,由液相及气相的控制方程、Darcy定律及Fick定律,经Laplace变换及Cayley-Hamilton数学方法构造了顶面状态向量与任意深度处状态向量间的传递关系;通过引入初始及边界条件,得到了Laplace变换域内的超孔隙水压力、超孔隙气压力以及土层沉降的解;实现Laplace逆变换,得到了时间域内的解析解;用一典型算例,与差分法结果进行对比,验证了其正确性。

关键词: 非饱和土, 超孔隙气压力, 一维固结, 超孔隙水压力, 沉降, 解析解

Abstract:

This paper presents an analytical solution of the one-dimensional consolidation in unsaturated soil with a finite thickness under vertical loading and confinements in the lateral directions. The boundary contains the top surface permeable to water and air and the bottom impermeable to water and air. The analytical solution is for Fredlund's one-dimensional consolidation equation in unsaturated soils. The transfer relationship between the state vectors at top surface and any depth is obtained by using the Laplace transform and Cayley-Hamilton mathematical methods to the governing equations of water and air, Darcy's law and Fick's law. Excess pore-air pressure, excess pore-water pressure and settlement in the Laplace-transformed domain are obtained by using the Laplace transform with the initial conditions and boundary conditions. By performing inverse Laplace transforms, the analytical solutions are obtained in the time domain. A typical example illustrates the consolidation characteristics of unsaturated soil from analytical results. Finally, comparisons between the analytical solutions and results of the finite difference method indicate that the analytical solution is correct.

Key words: one-dimensional consolidation, analytical solution, excess pore-air pressure, unsaturated soil, excess pore-water pressure, settlement

中图分类号: 

APS Journals | CSTAM Journals | AMS Journals | EMS Journals | ASME Journals