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AbstractAbstract
[en] Where there is a strong interaction between fluid flow, heat transfer and stress induced deformation, it may not be sufficient to solve each problem separately (i.e. fluid vs. stress, using different techniques or even different computer codes). This may be acceptable where the interaction is static, but less so, if it is dynamic. It is desirable for this reason to develop software that can accommodate both requirements (i.e. that of fluid flow and that of solid mechanics) in a seamless environment. This is accomplished in the University of Greenwich code PHYSICA, which solves both the fluid flow problem and the stress-strain equations in a unified Finite-Volume environment, using an unstructured computational mesh that can deform dynamically. Example applications are given of the work of the group in the metals casting process (where thermal stresses cause elasto- visco-plastic distortion)
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Ben-Haim, Y. (ed.); Technion-Israel Institute of Technology, Haifa (Israel); 705 p; 19 May 1998; p. 136-138; 27. Israel conference on mechanical engineering; Haifa (Israel); 19-20 May 1998; Also available from Technion Israel Institute of Technology, Haifa (Israel). Dept. of Mechanical Engineering, Israel
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