This paper discusses the propagation of surface waves in a stratified half space, which consists of an elastic granular upper layer that rests on a half-infinite elastic substratum. For the upper layer the effect of particle translation and particle rotation are incorporated via a second-gradient co
Surface waves in a stratified half space with enhanced continuum properties. Part 1: Formulation of the boundary value problem
✍ Scribed by Akke S.J. Suiker; Ching S. Chang; René de Borst; Coenraad Esveld
- Publisher
- Elsevier Science
- Year
- 1999
- Tongue
- English
- Weight
- 230 KB
- Volume
- 18
- Category
- Article
- ISSN
- 0997-7538
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✦ Synopsis
This paper discusses the propagation of surface waves in an elastic stratified half space, which consists of a granular elastic upper layer resting on a classic elastic substratum. We will consider both the case of an upper layer with second-gradient continuum properties, and an upper layer with Cosserat continuum properties. These enhanced continuum formulations are able to describe micro-scale effects as governed by the individual particle displacements and particle rotations. The micro-scale effects become important when the length of the surface waves is of the same order of magnitude as the particle size, which may occur in a high-speed railway track that consists of an upper layer of ballast particles. In an accompanying paper we will therefore analyse the critical structural response of the stratified half space when it is subjected to a moving, harmonically vibrating load. This model is representative for a high-speed railway system.
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