AbstractThe work deals with the development of an effective numerical tool in the form of pseudospectral method for wave propagation analysis in anisotropic and inhomogeneous structures. Chebyshev polynomials are used as basis functions and Chebyshev–Gauss–Lobatto points are used as grid points. The formulation is implemented in the same way as conventional finite element method. The element is tested successfully on a variety of problems involving isotropic, orthotropic and functionally graded material (FGM) structures. The formulation is validated by performing static, free vibration and wave propagation analysis. The accuracy of the element in predicting stresses is compared with conventional finite elements. Free vibration analysis is c...
The thin-layer method (TLM) is used to study the propagation of waves in inhomogeneous piezocomposit...
In this paper, wave propagation method was applied to detect damage of structures. Spectral Finite E...
This work presents the extension of an existing procedure for evaluating the waveguides and the disp...
The work deals with the development of an effective numerical tool in the form of pseudospectral met...
AbstractThe work deals with the development of an effective numerical tool in the form of pseudospec...
The use of composites and Functionally Graded Materials (FGMs) in structural applications has increa...
The paper presents a numerical approach called the pseudo-spectral method tc model elastic-wave prop...
A new spectral plate element (SPE) is developed to analyze wave propagation in anisotropic laminated...
A new spectral element ( SE) is formulated to analyse wave propagation in anisotropic in homogeneous...
Wave propagation in anisotropic inhomogeneous layered media due to high frequency impact loading is ...
A new spectrally formulated plate element is developed to study wave propagation in composite struct...
In this paper, spectral finite element method is employed to analyse the wave propagation behavior i...
Wave propagation in orthotropic layered composite media due to high frequency impact loading is stud...
This paper presents various numerical techniques for the analysis of the one dimensional wave equati...
The thin-layer method (TLM) is used to study the propagation of waves in inhomogeneous piezocomposit...
In this paper, wave propagation method was applied to detect damage of structures. Spectral Finite E...
This work presents the extension of an existing procedure for evaluating the waveguides and the disp...
The work deals with the development of an effective numerical tool in the form of pseudospectral met...
AbstractThe work deals with the development of an effective numerical tool in the form of pseudospec...
The use of composites and Functionally Graded Materials (FGMs) in structural applications has increa...
The paper presents a numerical approach called the pseudo-spectral method tc model elastic-wave prop...
A new spectral plate element (SPE) is developed to analyze wave propagation in anisotropic laminated...
A new spectral element ( SE) is formulated to analyse wave propagation in anisotropic in homogeneous...
Wave propagation in anisotropic inhomogeneous layered media due to high frequency impact loading is ...
A new spectrally formulated plate element is developed to study wave propagation in composite struct...
In this paper, spectral finite element method is employed to analyse the wave propagation behavior i...
Wave propagation in orthotropic layered composite media due to high frequency impact loading is stud...
This paper presents various numerical techniques for the analysis of the one dimensional wave equati...
The thin-layer method (TLM) is used to study the propagation of waves in inhomogeneous piezocomposit...
In this paper, wave propagation method was applied to detect damage of structures. Spectral Finite E...
This work presents the extension of an existing procedure for evaluating the waveguides and the disp...