JOURNAL ARTICLE

Implementation of Viscoelastic Behavior in a Time Domain Boundary Element Formulation

Martin SchanzLothar Gaul

Year: 1993 Journal:   Applied Mechanics Reviews Vol: 46 (11S)Pages: S41-S46   Publisher: American Society of Mechanical Engineers

Abstract

The boundary element method (BEM) provides a powerful tool for the calculation of elastodynamic response in frequency and time domain. Field equations of motion and boundary conditions are cast into integral equations, which are discretized only at the boundary. The boundary data often are of primary interest because they govern the transfer dynamics of members and the energy radiation into a surrounding medium. Formulations of BEM currently include conventional viscoelastic constitutive equations in the frequency domain. In the present paper viscoelastic behaviour is implemented in a time domain approach as well. The constitutive equations are generalized by taking fractional order time derivatives into account.

Keywords:
Boundary element method Viscoelasticity Constitutive equation Boundary (topology) Time domain Discretization Boundary value problem Mathematical analysis Equations of motion Frequency domain Domain (mathematical analysis) Mathematics Finite element method Mechanics Physics Classical mechanics Computer science

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Citation History

Topics

Numerical methods in engineering
Physical Sciences →  Engineering →  Mechanics of Materials
Vibration and Dynamic Analysis
Physical Sciences →  Engineering →  Control and Systems Engineering
Geotechnical Engineering and Underground Structures
Physical Sciences →  Engineering →  Civil and Structural Engineering

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