By Mohamed Gad-el-Hak (auth.), Prof. Dr. Rudibert King (eds.)
This quantity includes a good balanced mixture of theoretical and experimental cutting-edge result of Active circulate Control. It combines new advancements in actuator expertise, sensing, strong and optimum open- and closed-loop keep watch over and version relief for keep an eye on. Numerical and experimental purposes are thought of from aeronautics, turbo-machinery and combustors. The contributions to this publication have been offered on the convention Active movement Control 2006, held September 27-29, 2006, on the Technische Universität Berlin, Germany. The convention used to be prepared through the Collaborative examine heart SFB 557 ‘Control of advanced turbulent shear flows’, that is funded by means of the DFG (German study Foundation).
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Additional resources for Active Flow Control: Papers contributed to the Conference “Active Flow Control 2006”, Berlin, Germany, September 27 to 29, 2006
C. , and H¨ubler, A. (1989) “Resonant Stimulation of Complex Systems,” Helv. Phys. Acta 62, pp. 544–551. M. (1996) “Progress and Prospects for Active Flow Control Using Microfabricated Electromechanical Systems (MEMS),” AIAA Paper No. C. , and Reshotko, E. (1996) “Microelectromechanical Systems for Aerodynamics Applications,” AIAA Paper No. C. , and Bewley, T. (1994) “Feedback Control of Turbulence,” Appl. Mech. Rev. 47, no. 6, part 2, pp. S3–S13. K. (1985) “The Control of Low-Speed Streak Bursting in Turbulent Spots,” AIAA Paper No.
A circular cylinder equipped with electrodes as well as permanent magnets generating a wall Electromagnetic Control of Separated Flows Using Periodic Excitation 29 parallel force in streamwise direction was used in the experiments and numerical calculations of Weier et al. . Similar conﬁgurations were investigated later by Kim and Lee , Posdziech and Grundmann , and Chen and Aubry . Results on separation prevention on hydrofoils using steady Lorentz forces have been reported by Weier et al.
E 47, pp. 305–310. , and Dowling, A. (1993) “Active Boundary Layer Control in Diffusers,” AIAA Paper No. C. , and Grebogi, C. (1993) “Synchronization of Chaotic Trajectories Using Control,” Phys. Rev. E 47, pp. 2357–2360. , and Grebogi, C. (1993a) “Controlling Hamiltonian Chaos,” Phys. Rev. E 47, pp. 86–92. , and T´el, T. (1994) “Controlling Transient Chaos in Dynamical Systems,” in Towards the Harnessing of Chaos, ed. M. Yamaguchi, Elsevier, Amsterdam, the Netherlands. The Taming of the Shrew: Why Is It so Difﬁcult to Control Turbulence?