NASA NTRS · 19870065751
Cellular automatons applied to gas dynamic problems
Abstract
This paper compares the results of a relatively new computational fluid dynamics method, cellular automatons, with experimental data and analytical results. This technique has been shown to qualitatively predict fluidlike behavior; however, there have been few published comparisons with experiment or other theories. Comparisons are made for a one-dimensional supersonic piston problem, Stokes first problem, and the flow past a normal flat plate. These comparisons are used to assess the ability of the method to accurately model fluid dynamic behavior and to point out its limitations. Reasonable results were obtained for all three test cases, but the fundamental limitations of cellular automatons are numerous. It may be misleading, at this time, to say that cellular automatons are a computationally efficient technique. Other methods, based on continuum or kinetic theory, would also be very efficient if as little of the physics were included.
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Long, Lyle N., Coopersmith, Robert M., Mclachlan, B. G.. 1987-06-01. Cellular automatons applied to gas dynamic problems. https://ntrs.nasa.gov/citations/19870065751
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