Thirty Years of the Finite Volume Method for Solid Mechanics

Author:

Cardiff P.ORCID,Demirdžić I.

Funder

NV Bekaert SA

Irish Composites Centre

I-Form / Science Foundation Ireland

Publisher

Springer Science and Business Media LLC

Subject

Applied Mathematics,Computer Science Applications

Reference609 articles.

1. Runchal AK (2017) Tributes to an exceptional life: D. Brian Spalding, 9 January 1923–27 November 2016. Available at https://www.astfe.org/doc/Brian_Spalding-Tributes_to_an_Exceptional_Life.pdf

2. Demirdžić I, Martinović D, Ivanković A (1988) Numerical simulation of thermal deformation in welded workpiece. Zavarivanje, 31:209–219 (in Croatian). English translation available at https://www.researchgate.net/profile/Alojz_Ivankovic/publication/296148474_Numerical_simulation_of_thermal_deformation_in_welded_workpiece/links/5d07642ba6fdcc39f12219eb/Numerical-simulation-of-thermal-deformation-in-welded-workpiece.pdf

3. Demirdžić I, Martinović D (1993) Finite volume method for thermo-elasto-plastic stress analysis. Comput Methods Appl Mech Eng 109:331–349

4. Bailey C, Fryer YD, Cross M, Chow P (1991) Predicting the deformation of castings in moulds using a control volume approach on unstructured meshes. In: Cross M, Pittman JFT, Wood RD (eds) Mathematical modelling for materials processing: based on the proceedings of a conference on mathematical modelling of materials processing, organized by the Institute of Mathematics and its Applications, University of Bristol, September, 1991

5. Fryer YD, Bailey C, Cross M, Lai C-H (1991) A control volume procedure for solving the elastic stress–strain equations on an unstructured mesh. Appl Math Model 15:639–645

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