Finite Element a Posteriori Error Estimation for Heat Conduction - Christopher G Lang - Libros - Biblioscholar - 9781288910786 - 12 de marzo de 2013
En caso de que portada y título no coincidan, el título será el correcto

Finite Element a Posteriori Error Estimation for Heat Conduction

Precio
$ 61,99
sin IVA

Pedido desde almacén remoto

Entrega prevista 17 de jun. - 6 de jul.
Añadir a tu lista de deseos de iMusic

Publisher Marketing: This research investigates residual-based a posteriori error estimates for finite element approximations of heat conduction in single-layer and multi-layered materials. The finite element approximation, based upon hierarchical modelling combined with p-version finite elements, is described with specific application to a two-dimensional, steady state, heat-conduction problem. Element error indicators are determined by solving an element equation for the error with the element residual as a source, and a global error estimate in the energy norm is computed by collecting the element contributions. Numerical results of the performance of the error estimate are presented by comparisons to the actual error. Two methods are discussed and compared for approximating the element boundary flux. The equilibrated flux method provides more accurate results for estimating the error than the average flux method. The error estimation is applied to multi-layered materials with a modification to the equilibrated flux method to approximate the discontinuous flux along a boundary at the material interfaces. A directional error indicator is developed which distinguishes between the hierarchical modeling error and the finite element error. Numerical results are presented for single-layered materials which show that the directional indicators accurately determine which contribution to the total error dominates.

Medios de comunicación Libros     Paperback Book   (Libro con tapa blanda y lomo encolado)
Publicado 12 de marzo de 2013
ISBN13 9781288910786
Editores Biblioscholar
Páginas 90
Dimensiones 189 × 246 × 5 mm   ·   176 g

Mere med samme udgiver