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Large-scale application of some modern CSM methodologies by parallel computation
In this paper, the authors demonstrate the significant benefits that High Performance Computing has provided for several large-scale applications of some modern Computational Structural Mechanics (CSM) methodologies. Large complex dynamic analyses, involving large strain/deformation and inelasticity, were reasonably performed by parallel processing with recent constitutive models and modern computational techniques. The predictions were made with finite element and mesh-free method software developed by the authors, using Message Passing Interface on CRAY T3E and IBM SP platforms. Excellent scalability on hundreds of processors was attained, which demonstrated the large-scale viability of the methodologies and greatly improved the authors' research and development productivity.
Large-scale application of some modern CSM methodologies by parallel computation
In this paper, the authors demonstrate the significant benefits that High Performance Computing has provided for several large-scale applications of some modern Computational Structural Mechanics (CSM) methodologies. Large complex dynamic analyses, involving large strain/deformation and inelasticity, were reasonably performed by parallel processing with recent constitutive models and modern computational techniques. The predictions were made with finite element and mesh-free method software developed by the authors, using Message Passing Interface on CRAY T3E and IBM SP platforms. Excellent scalability on hundreds of processors was attained, which demonstrated the large-scale viability of the methodologies and greatly improved the authors' research and development productivity.
Large-scale application of some modern CSM methodologies by parallel computation
Danielson, K.T. (author) / Uras, R.A. (author) / Adley, M.D. (author) / Li, S. (author)
2000
9 Seiten, 25 Quellen
Conference paper
English
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