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Control of oscillations in flow problems under frequency limitations. (English) Zbl 1269.76038

Summary: In this paper we investigate the control of flow problems where the control objective is to reduce the oscillation amplitude while keeping the frequency of oscillation between predefined limits at all times. The governing equations are simplified to obtain the oscillatory mode dynamics, after which the conditions that the control parameters must satisfy in order to achieve the desired objective are derived in detail. The results obtained are illustrated on a physical application example, namely cavity flow control, where it is seen that the controller is successful in achieving the control goal.

MSC:

76D55 Flow control and optimization for incompressible viscous fluids
Full Text: DOI

References:

[1] Aamo, O.M., Automatica 39 (9) pp 1597– (2003) · Zbl 1055.93039 · doi:10.1016/S0005-1098(03)00140-7
[2] Amitay, M., AIAA Journal 39 (3) pp 361– (2001) · doi:10.2514/2.1323
[3] Banaszuk, A., Automatica 40 (11) pp 1965– (2004) · Zbl 1059.93515 · doi:10.1016/j.automatica.2004.06.008
[4] Baramov, L., IEEE Transactions on Control Systems Technology 12 (1) pp 111– (2004) · doi:10.1109/TCST.2003.821951
[5] Bewley, T.R., Progress in Aerospace Sciences 37 (1) pp 21– (2001) · doi:10.1016/S0376-0421(00)00016-6
[6] Camphouse, R.C., Journal of Guidance, Control, and Dynamics 28 pp 931– (2005) · doi:10.2514/1.10523
[7] Caraballo, E., Journal of Fluids Engineering 129 pp 813– (2007) · doi:10.1115/1.2742724
[8] Cohen, K., Computers and Fluids 34 (8) pp 927– (2005) · Zbl 1134.76336 · doi:10.1016/j.compfluid.2004.08.001
[9] Cortelezzi, L., Proceedings of the 37th IEEE Conference on Decision and Control
[10] Efe, M.O., International Journal of Control 77 (10) pp 895– (2004) · Zbl 1064.93020 · doi:10.1080/00207170412331270532
[11] Fitzpatrick, K., Journal of Guidance, Control, and Dynamics 28 (1) pp 63– (2005) · doi:10.2514/1.4664
[12] Gad-el Hak, M., Flow Control - Passive, Active, and Reactive Flow Management (2000) · Zbl 0968.76001 · doi:10.1017/CBO9780511529535
[13] Graham, W.R., International Journal for Numerical Methods in Engineering 44 pp 945– (1999) · Zbl 0955.76026 · doi:10.1002/(SICI)1097-0207(19990310)44:7<945::AID-NME537>3.0.CO;2-F
[14] Gilarranz, J.L., Journal of Fluids Engineering 127 (2) pp 377– (2005) · doi:10.1115/1.1882393
[15] Hinze, M., Zeitschrift fur Angewandte Mathematik und Mechanik 84 (3) pp 171– (2004) · Zbl 1042.35047 · doi:10.1002/zamm.200310094
[16] Hogberg, M., Journal of Fluid Mechanics 481 pp 149– (2001) · Zbl 1163.76353 · doi:10.1017/S0022112003003823
[17] Holmes, P., Turbulence, Coherent Structures, Dynamical Systems, and Symmetry (1996) · Zbl 0890.76001 · doi:10.1017/CBO9780511622700
[18] Jordan, D.W., Nonlinear Ordinary Differential Equations: An Introduction to Dynamical Systems (1999) · Zbl 0955.34001
[19] Joslin, R.D., Annual Review of Fluid Mechanics 30 pp 1– (1998) · doi:10.1146/annurev.fluid.30.1.1
[20] Kasnakoglu, C., European Journal of Control 13 (5) pp 529– (2007) · Zbl 1293.93136 · doi:10.3166/ejc.13.529-542
[21] Kasnakoglu, C., International Journal of Control 81 (9) pp 1475– (2008) · Zbl 1152.49316 · doi:10.1080/00207170701867857
[22] Kim, J., Physics of Fluids 15 pp 1093– (2003) · Zbl 1186.76283 · doi:10.1063/1.1564095
[23] Kobayashi, T., Control and Cybernetics 32 (2) pp 245– (2003)
[24] Krstic, M., Systems and Control Letters 37 (3) pp 123– (1999) · Zbl 1074.93552 · doi:10.1016/S0167-6911(99)00013-4
[25] Landau, L.D., Fluid Mechanics 6 (1987)
[26] Noack, B.R., Journal of Fluid Mechanics 497 pp 335– (2003) · Zbl 1067.76033 · doi:10.1017/S0022112003006694
[27] Noack, B.R., Journal of Fluid Mechanics 270 pp 297– (1994) · Zbl 0813.76025 · doi:10.1017/S0022112094004283
[28] Noack, B.R., Journal of Fluid Mechanics 523 pp 339– (2005) · Zbl 1065.76102 · doi:10.1017/S0022112004002149
[29] Noack, B.R., Proceedings of the 2nd AIAA Flow Control Conference
[30] Ocvirk, G., Electrophoresis 21 pp 107– (2000) · doi:10.1002/(SICI)1522-2683(20000101)21:1<107::AID-ELPS107>3.0.CO;2-Y
[31] Park, H.M., Computer Methods in Applied Mechanics and Engineering 188 (1) pp 165– (2000) · Zbl 0961.76018 · doi:10.1016/S0045-7825(99)00146-2
[32] Rowley, C.W., Physica D 189 (1) pp 115– (2004) · Zbl 1098.76602 · doi:10.1016/j.physd.2003.03.001
[33] Rowley, C.W., Proceedings of the 44th IEEE Conference on Decision and Control
[34] Rowley, C.W., Physica D 142 (1) pp 1– (2000) · Zbl 0954.35144 · doi:10.1016/S0167-2789(00)00042-7
[35] Samimy, M., Journal of Fluid Mechanics 579 pp 315– (2007) · Zbl 1113.76008 · doi:10.1017/S0022112007005204
[36] Seiler, K., Analytical Chemistry 66 (20) pp 3485– (1994) · doi:10.1021/ac00092a029
[37] Singh, S.N., ASME Journal of Fluids Engineering 123 (3) pp 612– (2001) · doi:10.1115/1.1385513
[38] Sirovich, L., Quarterly Journal of Applied Mathematics 45 (3) pp 561– (1987) · Zbl 0676.76047 · doi:10.1090/qam/910462
[39] Smaoui, N., Journal of Computational and Applied Mathematics 182 (1) pp 91– (2005) · Zbl 1074.93023 · doi:10.1016/j.cam.2004.10.020
[40] Stuart, J.T., Journal of Fluid Mechanics Digital Archive 9 (3) pp 353– (2006) · Zbl 0096.21102 · doi:10.1017/S002211206000116X
[41] Tadmor, G., Proceedings of the 42nd IEEE Conference on Decision and Control
[42] Tadmor, G., Proceedings of the 2nd AIAA Flow Control Conference
[43] Wu, J., Journal of Fluid Mechanics 371 pp 21– (1998) · Zbl 1054.76551 · doi:10.1017/S0022112098002055
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