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Implementation of a second‐order paraxial boundary condition for a water‐saturated layered half‐space in plane strain
Authors:John L Tassoulas
Institution:Department of Civil, Architectural and Environmental Engineering, The University of Texas at Austin, Austin, TX, U.S.A.Professor.
Abstract:A half‐space finite element and a transmitting boundary are developed for a water‐saturated layered half‐space using a paraxial boundary condition. The exact dynamic stiffness of a half‐space in plane strain is derived and a second‐order paraxial approximation of the stiffness is obtained. A half‐space finite element and a transmitting boundary are then formulated. The development is verified by comparison of the dynamic stiffness of impermeable and permeable rigid strip foundations with other published results. The advantage of using the paraxial boundary condition in comparison with the rigid boundary condition is examined. It is shown that the paraxial boundary condition offers significant gain and the resulting half‐space finite element and transmitting boundary can represent the effects of a water‐saturated layered half‐space with good accuracy and efficiency. In addition, the numerical method described herein maintains the strengths and advantages of the finite element method and can be easily applied to demanding problems of soil–structure interaction in a water‐saturated layered half‐space. Copyright © 2010 John Wiley & Sons, Ltd.
Keywords:saturated porous media  layered half‐space  paraxial boundary condition  transmitting boundary  soil–  structure interaction
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