Parallelized iterative domain decomposition boundary element method for thermoelasticity


Abstract:

The boundary element method (BEM) requires only a surface mesh to solve thermoelasticity problems, however, the resulting matrix is fully populated and non-diagonally dominant. This poses serious challenges for large-scale problems due to storage requirements and the solution of large sets of non-symmetric systems of equations. In this article, an effective and efficient domain decomposition, or artificial sub-sectioning technique, along with a region-by-region iteration algorithm particularly tailored for parallel computation to address these issues are developed. The domain decomposition approach effectively reduces the condition number of the resulting algebraic systems, while increasing efficiency of the solution process and decreasing memory requirements. The iterative process converges very efficiently while offering substantial savings in memory. The iterative domain decomposition technique is ideally suited for parallel computation. Results demonstrate the validity of the approach by providing solutions that compare closely to single-region BEM solutions and benchmark analytical solutions.

Año de publicación:

2007

Keywords:

  • Boundary Element Method
  • Domain decomposition
  • Parallel computation
  • Thermoelasticity

Fuente:

scopusscopus

Tipo de documento:

Other

Estado:

Acceso restringido

Áreas de conocimiento:

  • Ciencias de la computación
  • Método de elementos finitos
  • Simulación por computadora

Áreas temáticas de Dewey:

  • Ingeniería y operaciones afines
  • Análisis numérico
  • Mecánica clásica
Procesado con IAProcesado con IA

Objetivos de Desarrollo Sostenible:

  • ODS 9: Industria, innovación e infraestructura
  • ODS 11: Ciudades y comunidades sostenibles
  • ODS 17: Alianzas para lograr los objetivos
Procesado con IAProcesado con IA