Adaptation in coupled problems

Author:

Vokas Christos,Kasper Manfred

Abstract

PurposeThe purpose of this paper is to address the formulation, implementation, and adaptation of closely coupled multi‐physics problems with h‐ and p‐adaptive finite element methods. A general formulation is chosen allowing for coupled problems of various types. Adaptation algorithms for h‐ and p‐refinement are given.Design/methodology/approachA generic system of second‐order differential equations is used, where the field of each individual problem is represented as an entry in the list of field variables. Specific problems are implemented by mapping material coefficients to the coefficients of the generic form. An example with four natures is investigated with close coupling between electric, mechanical and thermal fields. h‐ and p‐refinement using a single mesh is considered, where the element order may differ for individual fields.FindingsIn coupled problems, the error in each single field is affected by approximation properties of all other field quantities. In order to allow for optimal convergence order in the number of degrees of freedom, the error contributions of all fields have to be considered. Separate error estimation in each field is needed especially in h‐adaptation on a single mesh. Energy coupling coefficients were introduced to derive an adaptation criterion. Convergence analysis of h‐ and p‐adaptation proves the feasibility of the approach.Originality/valuePiezopyroelectricity considers thermal effects in high‐frequency piezoelectric materials, which is a coupled problem of four natures. The paper introduces an adaptation criterion for such complicated coupled problems and proves feasibility.

Publisher

Emerald

Subject

Applied Mathematics,Electrical and Electronic Engineering,Computational Theory and Mathematics,Computer Science Applications

Cited by 5 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Remapping-free variational h-adaption for strongly coupled thermo-mechanical problems;Finite Elements in Analysis and Design;2020-09

2. Adaptive Modeling and Simulation of Elastic, Dielectric and Piezoelectric Problems;Finite Element Method - Simulation, Numerical Analysis and Solution Techniques;2018-02-28

3. Problems of Hierarchical Modelling and hp-Adaptive Finite Element Analysis in Elasticity, Dielectricity and Piezoelectricity;Perusal of the Finite Element Method;2016-12-14

4. Application of the Element Residual Methods to dielectric and piezoelectric problems;Advances in Mechanics: Theoretical, Computational and Interdisciplinary Issues;2016-04-20

5. Fully automatic adaptive finite element procedure for multiphysics problems in three dimensions;AIP Conference Proceedings;2014

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