Towards a general numerical scheme for solidification systems
β Scribed by C.R. Swaminathan; V.R. Voller
- Book ID
- 104136343
- Publisher
- Elsevier Science
- Year
- 1997
- Tongue
- English
- Weight
- 750 KB
- Volume
- 40
- Category
- Article
- ISSN
- 0017-9310
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β¦ Synopsis
A central problem in the numerical treatment of the solidification of alloys is the coupling between the temperature and concentration fields. In this paper, governing equations and relationships that describe the temperature-solute coupling in a multicomponent alloy are presented. An overview of previous numerical coupling schemes is outlined. Following the presentation of a mixed explicit/implicit discretization of the governing equations a new numerical temperature-solute coupling scheme is developed.
This new scheme can model the solidification of multicomponent alloys for a wide range of local scale behaviors. The performance of the scheme is tested on comparing numerical predictions for a ternary eutectic alloy with results obtained from a similarity solution.
π SIMILAR VOLUMES
A new geometric entity ls introduced, the 'presque halfplane" (php), and used to construct 'the php representation'. This representation scheme for 2D objects has some determining properties:, a wide domain, validity, completeness, uniqueness and equality. It can easily be employed to serve the need
## Abstract A recursive numerical integration scheme based on the method of Clenshaw and Curtis is proposed for the efficient implementation of the variationβiteration procedure for the computation of approximate energies and wave functions for atomic systems. Extensive numerical tests are carried