Parallelized Element-By-Element Solver for Structural Analysis of Flexible Pipes Using Finite Macroelements

Author:

Toni Fernando Geremias1,de Arruda Martins Clóvis1

Affiliation:

1. University of São Paulo Department of Mechanical Engineering, , Avenida Professor Mello Moraes, No. 2231, São Paulo, SP 05508-900 , Brazil

Abstract

Abstract Due to the number of layers and their respective geometrical complexities, finite element analyses of flexible pipes usually require large-scale schemes with a high number of elements and degrees-of-freedom. If proper precautions are not taken, such as suitable algorithms and numerical methods, the computational costs of these analyses may become unfeasible. Finite macroelements are finite elements formulated for the solution of a specific problem considering and taking advantage of its particularities, such as geometry patterns, to obtain computational advantages, as reduced number of degrees-of-freedom and ease of problem description. The element-by-element (EBE) method also fits very well in this context, since it is characterized by the elimination of the global stiffness matrix and its memory consumption grows linearly with the number of elements, besides being highly parallelizable. Over the last decades, several works regarding the EBE method were published in the literature, but none of them directly applied to flexible pipes. Due to the contact elements between the layers, problems with flexible pipes are usually characterized by very large matrix bandwidth, making the implementation of the EBE method more challenging, so that its efficiency and scalability are not compromised. Therefore, this work presents a parallelized implementation of an element-by-element architecture for structural analysis of flexible pipes using finite macroelements. Four synchronization algorithms were developed and analyzed in detail, including their scalability assessment, and comparisons were made with a well-established finite element method (FEM) software with significant gains in simulation time and memory consumption.

Funder

Conselho Nacional de Desenvolvimento Científico e Tecnológico

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

Publisher

ASME International

Subject

Mechanical Engineering,Ocean Engineering

Reference25 articles.

1. Contribuição ao Projeto de Cabos Umbilicais e Tubos Flexíveis: Ferramentas de CAD e Modelo de Macro Elementos;Provasi,2013

2. A Finite Macro-Element for Orthotropic Cylindrical Layer Modeling;Provasi;ASME J. Offshore Mech. Arct. Eng,2013

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4. A Rigid Connection for Macro-Elements With Different Node Displacement Natures;Provasi,2013

5. A Frictional Contact Element for Flexible Pipe Modelling With Finite Macroelements;Provasi;ASME J. Offshore Mech. Arct. Eng.,2018

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