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Apporoximation of contact geometry in the dynamical simulation of wheel-rail

Authors: M. Arnold -; H. Netter -
DOI: 10.1080/13873959808837075
Publication Frequency: 6 issues per year
Published in: journal Mathematical and Computer Modelling of Dynamical Systems, Volume 4, Issue 2 1998 , pages 162 - 184
Formats available: PDF (English)
Previously published as: Mathematical Modelling of Systems (1381-2424) until 1998
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Abstract

Models for the geometrical contact of wheel and rail are a basic component of multibody system (MBS) models for wheel-rail systems. Approximations are used to get sufficiently differentiable contact conditions that can be evaluated efficiently. We discuss an approximation that is essentially based on polynomial 2D-tensorproduct splines and minimizes a functional that combines a weighted least squares approximation of a rigid contact model with a smoothing term. An efficient algorithm to compute the tensorproduct spline is developed, the parallelization on a cluster of workstations is discussed. We report on results of both the sequential and the parallel algorithm and give simulation results for a rigid wheelset on a straight track.
Keywords: Dynamical simulation; multibody systems; PVM; tensorproduct spline; wheel-rail contact
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