Search NASASearch

NASA NTRS · 19930050042

Parallel computing for probabilistic fatigue analysis

Abstract

This paper presents the results of Phase I research to investigate the most effective parallel processing software strategies and hardware configurations for probabilistic structural analysis. We investigate the efficiency of both shared and distributed-memory architectures via a probabilistic fatigue life analysis problem. We also present a parallel programming approach, the virtual shared-memory paradigm, that is applicable across both types of hardware. Using this approach, problems can be solved on a variety of parallel configurations, including networks of single or multiprocessor workstations. We conclude that it is possible to effectively parallelize probabilistic fatigue analysis codes; however, special strategies will be needed to achieve large-scale parallelism to keep large number of processors busy and to treat problems with the large memory requirements encountered in practice. We also conclude that distributed-memory architecture is preferable to shared-memory for achieving large scale parallelism; however, in the future, the currently emerging hybrid-memory architectures will likely be optimal.

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Sues, Robert H., Lua, Yuan J., Smith, Mark D.. 1993-01-01. Parallel computing for probabilistic fatigue analysis. https://ntrs.nasa.gov/citations/19930050042

Cite the original work for its findings. Save a collection to share your selection of sources.