NASA NTRS · 19930001184
SAPNEW: Parallel finite element code for thin shell structures on the Alliant FX/80
Abstract
The results of a research activity aimed at providing a finite element capability for analyzing turbo-machinery bladed-disk assemblies in a vector/parallel processing environment are summarized. Analysis of aircraft turbofan engines is very computationally intensive. The performance limit of modern day computers with a single processing unit was estimated at 3 billions of floating point operations per second (3 gigaflops). In view of this limit of a sequential unit, performance rates higher than 3 gigaflops can be achieved only through vectorization and/or parallelization as on Alliant FX/80. Accordingly, the efforts of this critically needed research were geared towards developing and evaluating parallel finite element methods for static and vibration analysis. A special purpose code, named with the acronym SAPNEW, performs static and eigen analysis of multi-degree-of-freedom blade models built-up from flat thin shell elements.
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Kamat, Manohar P., Watson, Brian C.. 1992-02-01. SAPNEW: Parallel finite element code for thin shell structures on the Alliant FX/80. https://ntrs.nasa.gov/citations/19930001184
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