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Dual reciprocity BEM applied to transient elastodynamic problems with differential quadrature method in time

✍ Scribed by Masataka Tanaka; Wen Chen


Publisher
Elsevier Science
Year
2001
Tongue
English
Weight
499 KB
Volume
190
Category
Article
ISSN
0045-7825

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✦ Synopsis


This paper is concerned with numerical analysis of the transient elastodynamic problems by the dual reciprocity BEM (DRBEM) in space combined with the dierential quadrature method (DQM) in time. Emphasis is placed on a comparative study of various timemarching schemes. Three numerical examples considered are for the longitudinal forced vibration of plates and the transverse free vibration of membranes. To authorsÕ best knowledge, this is the ®rst attempt to apply the DQM to the second-order time derivative in the DRBEM elastodynamic formulations. A recent approach using boundary conditions in the DQM was here extended to handle the initial conditions of elastodynamic problems. The resulting algebraic formulation is a Lyapunov matrix equation, which can be very eciently solved by the Bartels±Stewart algorithm. It is revealed that the DQM is an unconditionally stable algorithm and gives much better accuracy than the standard ®nite dierence schemes such as the Wilson h, Newmark and Houbolt methods, for the same time step size for the cases considered.


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