The FDM solution of unsteady inverse problem for twodimensional oscillating airfoils
Purpose This paper seeks to develop an approach for the unsteady inverse problem of twodimensional oscillating airfoils based on the finite difference method FDM solution of the transient Euler equations. Designmethodologyapproach The solution strategies are determined according to the mathematical...
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Veröffentlicht in: | Aircraft Engineering and Aerospace Technology 2007-01, Vol.79 (2), p.184-191 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Purpose This paper seeks to develop an approach for the unsteady inverse problem of twodimensional oscillating airfoils based on the finite difference method FDM solution of the transient Euler equations. Designmethodologyapproach The solution strategies are determined according to the mathematical model for the inverseproblem of oscillating airfoils. Then the unsteady nonreflecting far field boundary condition and the permeable wall boundary condition are employed to treat the boundary conditions. The applications are carried out for the modification of an oscillating airfoil according to the design targets of the unsteady pressure distribution in an oscillating period. Findings The results show that the pressure distributions over the new airfoils coincide with the design objects indicating that the mathematical model and solution strategy developed in this paper is rational and reliable. Research limitationsimplications This method is limited to frictionless flow. Originalityvalue The paper provides a new FDM solution of unsteady inverse problem for oscillating airfoils, which can be extended to treat the multipoint problem of airfoil design. |
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ISSN: | 0002-2667 |
DOI: | 10.1108/00022660710734589 |