Title of article :
A fully coupled finite element analysis of water-table fluctuation and land deformation in partially saturated soils due to surface loading
Author/Authors :
Jun-Mo Kim، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2000
Abstract :
A fully coupled numerical model is presented for the water-table
uctuation and land deformation in partially
saturated soils due to surface loading. This numerical model is developed based on the poroelastic governing
equations for groundwater
ow in deforming variably saturated porous media and the Galerkin nite element
method. The numerical model is veri ed and validated against a one-dimensional consolidation problem con-
cerning surface loading on a soil column which has six di erent initial water-table elevations. The numerical
model is then applied to a two-dimensional consolidation problem of surface loading on a partially saturated
soil at a construction site. Results from the numerical simulations of both problems show that the water table
uctuates in the partially saturated soils, and the unsaturated zone above the water table has signi cant e ects
on the consolidation behaviour of the partially saturated soils under surface loading. Such e ects are caused
by the permanent absorption of a portion of the mechanical loading stress and the weak hydromechanical
coupling between the solid skeleton deformation eld and the groundwater
ow eld in the unsaturated zone
due to its partial saturation.
Keywords :
surface loading , unsaturated soil , water-table uctuation , nite element simulation , land deformation , poroelasticitytheory
Journal title :
International Journal for Numerical Methods in Engineering
Journal title :
International Journal for Numerical Methods in Engineering