Quantifying nonlinearity in planar supersonic potential flows

dc.contributor.authorMeijer, Marius-Corne
dc.contributor.authorDala, L.
dc.date.accessioned2017-01-30T05:29:48Z
dc.date.issued2017-03
dc.description.abstractAn analysis is presented which allows the engineer to quantitatively estimate the validity bounds of aerodynamic methods based in linear potential flows a-priori. The development is limited to quasi-steady planar flows with attached shocks and small body curvature. Perturbation velocities are parametrised in terms of Mach number and flow turning-angle by means of a series-expansion for flow velocity based in the method of characteristics. The parametrisation is used to assess the magnitude of nonlinear term-groupings relative to linear groups in the full potential equation. This quantification is used to identify dominant nonlinear terms and to estimate the validity of linearising the potential flow equation at a given Mach number and flow turning angle. Example applications include the a-priori estimation of the validity bounds for linear aerodynamic models for supersonic aeroelastic analysis of lifting surfaces and panels.en_ZA
dc.description.departmentMechanical and Aeronautical Engineeringen_ZA
dc.description.embargo2017-06-30
dc.description.librarianhb2017en_ZA
dc.description.librarianmi2025en
dc.description.sdgSDG-09: Industry, innovation and infrastructureen
dc.description.urihttp://journals.cambridge.org/action/displayJournal?jid=AFRen_ZA
dc.identifier.citationMeijer, MC & Dala, L 2017, 'Quantifying nonlinearity in planar supersonic potential flows', Aeronautical Journal, vol. 121, no. 1237, pp. 372-394..en_ZA
dc.identifier.issn0001-9240 (print)
dc.identifier.issn2059-6464 (online)
dc.identifier.urihttp://hdl.handle.net/2263/58667
dc.language.isoenen_ZA
dc.publisherCambridge University Pressen_ZA
dc.rights© Cambridge University Press 20xxen_ZA
dc.subjectQuantifying nonlinearityen_ZA
dc.subjectAerodynamic methodsen_ZA
dc.subjectLinear potential flowsen_ZA
dc.subject.otherEngineering, built environment and information technology articles SDG-09
dc.subject.otherSDG-09: Industry, innovation and infrastructure
dc.titleQuantifying nonlinearity in planar supersonic potential flowsen_ZA
dc.typePostprint Articleen_ZA

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