A formulation of a multi-wave elastodynamic infinite element
Konstantin S. Kazakov
Abstract
Open-access reader
Konstantin S. Kazakov
Abstract
Open-access reader
In this paper, a formulation of a multi-wave elastodynamic four and eight node infinite element is proposed.Such a kind of element is appropriate for multi-wave soil-structure interaction problems.The formulation follows the standard infinite element formulation steps which are the same as for the Finite element method after mapping the infinite element domain to a finite element domain.It is shown that if only one wave function is used (only one frequency) the proposed multi-wave elastodynamic infinite element is reduced to a singlewave elastodynamic infinite element.The mapping and the Lagrange isoparametric shape functions for a 2D axisymmetric four and eight node multi-wave elastodynamic quadrilateral infinite element are also given.The basic aspects of the continuity along the finite/infinite element (artificial boundary) line are discussed in brief.In this type of model such a line marks the boundary between the near and the far field of the model.The formulation is appropriate for wave propagation problems only.
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In this paper, a formulation of a multi-wave elastodynamic four and eight node infinite element is proposed.Such a kind of element is appropriate for multi-wave soil-structure interaction problems.The formulation follows the standard infinite element formulation steps which are the same as for the Finite element method after mapping the infinite element domain to a finite element domain.It is shown that if only one wave function is used (only one frequency) the proposed multi-wave elastodynamic infinite element is reduced to a singlewave elastodynamic infinite element.The mapping and the Lagrange isoparametric shape functions for a 2D axisymmetric four and eight node multi-wave elastodynamic quadrilateral infinite element are also given.The basic aspects of the continuity along the finite/infinite element (artificial boundary) line are discussed in brief.In this type of model such a line marks the boundary between the near and the far field of the model.The formulation is appropriate for wave propagation problems only.
Key concepts: Quadrilateral, Finite element method, Boundary element method, Mathematical analysis, Mixed finite element method, Boundary knot method, Extended finite element method, Boundary (topology)