Author:
Anantheswar Atul,Wollny Ines,Kaliske Michael
Abstract
AbstractThis work describes the implementation of a novel dynamic Arbitrary LagrangianEulerian (ALE) formulation for the simulation of pavement structures loaded by rolling tires in a finite element framework. The proposed formulation enables the simulation of dynamic effects like acceleration, deceleration and variation of the wheel load on the pavement. The ALE scheme is described for a hyperelastic St. Venant-Kirchhoff material capable of finite deformations. With the adoption of this dynamic ALE formulation, a significant improvement in terms of speed and efficiency of the simulation is achieved in comparison to a classical transient Lagrangian formulation. This is primarily because only the relevant portion of the mesh around the applied load needs to be discretized and simulated. Another benefit is that a cumbersome moving load formulation does not need to be implemented. The results show satisfactory agreement with a conventional Lagrangian simulation with a moving load.
Funder
Deutsche Forschungsgemeinschaft
Publisher
Springer Science and Business Media LLC
Subject
Applied Mathematics,Computational Mathematics,Computational Theory and Mathematics,Mechanical Engineering,Ocean Engineering,Computational Mechanics
Reference14 articles.
1. Benson D (1989) An efficient, accurate, simple ale method for nonlinear finite element programs. Comput Methods Appl Mech Eng 72:305–350
2. Donea J, Huerta A, Ponthot J, Rodríguez-Ferran A (2004) Arbitrary Lagrangian–Eulerian methods. Wiley Online Library, Encyclopedia of Computational Mechanics. Chap. 14
3. Bayoumi H, Gadala MS (2004) A complete finite element treatment for the fully coupled implicit ALE formulation. Comput Mech 33:435–452
4. Nazem M, Carter J, Airey D (2009) Arbitrary Lagrangian–Eulerian method for dynamic analysis of geotechnical problems. Comput Geotech 36:549–557
5. Zreid I, Behnke R, Kaliske M (2021) ALE formulation for thermomechanical inelastic material models applied to tire forming and curing simulations. Comput Mech 67:1543-1557
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