Volume 20, Issue 3 No AccessA new solution method for lifting surfaces in subsonic flowT. Ueda and E. H. DowellT. Ueda Princeton University, Princeton, N. J.Search for more papers by this author and E. H. Dowell Princeton University, Princeton, N. J.Search for more papers by this authorPublished Online:17 May 2012https://doi.org/10.2514/3.7916SectionsRead Now ToolsAdd to favoritesDownload citationTrack citations ShareShare onFacebookXLinked InRedditEmail About Previous article Next article FiguresReferencesRelatedDetailsSee PDF for referencesCited byFlutter generated on a sheet in 3D flow: influence of aspect ratio of sheets on post-critical and hysteretic behavior19 June 2024 | Nonlinear Dynamics, Vol. 112, No. 18Flutter characteristics of a sheet with an elastic support in three-dimensional uniform flow1 Jun 2024 | Journal of Fluids and Structures, Vol. 127Unsteady Aerodynamics with Case Studies4 September 2023BEM–FEM Coupling for Acoustic Effects on Aeroelastic Stability of Structures4 September 2023Flutter analysis and wind-tunnel experiments of a flat plate suspended by wires1 Jan 2023 | Transactions of the JSME (in Japanese), Vol. 89, No. 928Time-varying dynamic analysis of a plate entering the finite subsonic airflow field1 Nov 2022 | Thin-Walled Structures, Vol. 180The Study of Visualization and Modeling of Full Potential Equation with the Influence of Small Disturbance Based on Python26 August 2022 | Highlights in Science, Engineering and Technology, Vol. 12Flutter characteristics of multi-layered composite shell panels under supersonic flow with curvature effect9 June 2022 | Waves in Random and Complex MediaFluid–structure–control interaction simulation of flutter control problems1 Jun 2022 | Finite Elements in Analysis and Design, Vol. 203RAPID FLUTTER ANALYSIS FOR LOW-ASPECT-RATIO WINGS WITH A CONTROL SURFACE15 April 2022 | Journal of Applied Mechanics and Technical Physics, Vol. 63, No. 1Theoretical study on the instability mechanism of flutter generated on a cantilevered flexible plate in three-dimensional uniform flow4 May 2021 | Acta Mechanica, Vol. 232, No. 7Frequency response of a cantilevered rectangular sheet under harmonic forced excitation in three-dimensional uniform flow1 May 2021 | Journal of Fluids and Structures, Vol. 103Thick Strip Method for Efficient Large-Eddy Simulations of Flexible Wings in StallMohsen Lahooti, Rafael Palacios and Spencer J. 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Watts 17 May 2012 | AIAA Journal, Vol. 25, No. 11Lifting surface calculations in the Laplace domain with application to root loci Tetsuhiko Ueda 17 May 2012 | AIAA Journal, Vol. 25, No. 5A calculation method for unsteady aerodynamic forces in the Laplace domain and its application to root lociT. UEDA17 August 2012Computation of second-order accurate unsteady aerodynamic generalized forces Decker van Niekerk 17 May 2012 | AIAA Journal, Vol. 24, No. 3Application of the Vortex-Lattice Method to High-Angle-of-Attack Subsonic Aerodynamics1 October 1985Nonplanar doublet lattices Kenneth L. Roger 22 May 2012 | Journal of Aircraft, Vol. 22, No. 3A vortex-lattice method for general, unsteady aerodynamics P. Konstadinopoulos , D. F. Thrasher , D. T. Mook , A. H. Nayfeh and L. Watson 22 May 2012 | Journal of Aircraft, Vol. 22, No. 1Reply by Authors to W. P. Rodden Tetsuhiko Ueda and Earl H. Dowell 17 May 2012 | AIAA Journal, Vol. 22, No. 4Doublet-Point Method for Supersonic Unsteady Lifting Surfaces. T. Ueda and E. H. Dowell 17 May 2012 | AIAA Journal, Vol. 22, No. 2Comment on 'A new solution method for lifting surfaces in subsonic flow' William P. Rodden 17 May 2012 | AIAA Journal, Vol. 22, No. 1Expansion series of integral functions occurring in unsteady aerodynamics T. Ueda 22 May 2012 | Journal of Aircraft, Vol. 19, No. 4Evolution of swirl in two-dimensional-nozzle flow Joe Der Jr. , Chong-Wei Chu , B. L. Hunt and Dale J. Lorincz 22 May 2012 | Journal of Aircraft, Vol. 19, No. 4 What's Popular Volume 20, Number 3March 1982 Metrics Crossmark TopicsAerodynamic PerformanceAerodynamicsAerospace SciencesComputational Fluid DynamicsFinite Element MethodFlow RegimesFluid DynamicsFluid Flow PropertiesNumerical AnalysisVortex Dynamics KeywordsIncompressible FlowTapered WingsAerodynamic ForceControl SurfacesWing GeometryLift CoefficientRectangular WingKernel FunctionsHorseshoe VortexPressure CoefficientDigital Published online17 May 2012