NASA NTRS · 19750036189
Advanced panel-type influence coefficient methods applied to subsonic flows
Abstract
An advanced technique for solving the linear integral equations of three-dimensional subsonic potential flows (steady, inviscid, irrotational and incompressible) about arbitrary configurations is presented. It involves assembling select, logically consistent networks whose construction comprises four tasks, which are described in detail: surface geometry definition; singularity strength definition; control point and boundary condition specification; and calculation of induced potential or velocity. The technique is applied to seven wing examples approached by four network types: source/analysis, doublet/analysis, source/design, and doublet/design. The results demonstrate the forgiveness of the model to irregular paneling and the practicality of combined analysis/design boundary conditions. The appearance of doublet strength mismatch is a valuable indicator of locally inadequate paneling.
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Johnson, F. T., Rubbert, P. E.. 1975-01-01. Advanced panel-type influence coefficient methods applied to subsonic flows. https://ntrs.nasa.gov/citations/19750036189
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