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Duct design in subsonic and supersonic flow regimes with and without normal shock waves using Flexible String Algorithm
Nili Ahmadabadi, M ; Sharif University of Technology | 2010
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- Type of Document: Article
- Publisher: 2010
- Abstract:
- In this investigation, the Flexible String Algorithm (FSA) used before for the inverse design of 2D subsonic ducts is developed and applied for the inverse design of subsonic and supersonic ducts with and without normal shock waves. In this method, the duct wall shape is changed under a novel algorithm based on the deformation of a virtual flexible string in a flow. Deformation of the string due to the local fl.ow conditions resulting from changes in the wall geometry is performed until the target shape satisfying the. prescribed walls pressure distribution is achieved. The flow field at each shape modification step is analyzed using an Euler equation solution by the. A USM method. Some validation test cases and design examples in subsonic and supersonic regimes are presented here, which show the. robustness and flexibility of the method in handling the.complex geometries in various flow regimes. In the case, of unsymmetrical ducts with two unknown walls, the. FSA is modifl.ed to increase the convergence rate significantly. Also, the effect of duct inlet and outlet boundary conditions on the convergence of the FSA is investigated. The FSA is a physical and quick converging approach and can efficiently utilize flow analysis codes as a black box
- Keywords:
- Duct design ; FSA ; Internal flow ; Inviscid ; Normal shock ; Subsonic ; Supersonic ; Algorithms ; Convergence of numerical methods ; Deformation ; Design ; Euler equations ; Ducts ; Euler flow ; Flow field ; Flow modeling ; Flow pattern ; Shock wave ; Wall
- Source: Scientia Iranica ; Volume 17, Issue 3 B , MAY-JUNE , 2010 , Pages 179-193 ; 10263098 (ISSN)
- URL: http://en.journals.sid.ir/ViewPaper.aspx?ID=180102
