Active control of convection
Author(s) -
Jonathan P. Singer,
Haim H. Bau
Publication year - 1991
Publication title -
physics of fluids a fluid dynamics
Language(s) - English
Resource type - Journals
eISSN - 2163-5013
pISSN - 0899-8213
DOI - 10.1063/1.857831
Subject(s) - physics , convection , laminar flow , control theory (sociology) , chaotic , mechanics , boundary (topology) , flow (mathematics) , controller (irrigation) , mathematical analysis , control (management) , computer science , mathematics , artificial intelligence , agronomy , biology
It is demonstrated theoretically that active (feedback) control can be used to alter the characteristics of thermal convection in a toroidal, vertical loop heated from below and cooled from above. As the temperature difference between the heated and cooled sections of the loop increases, the flow in the uncontrolled loop changes from no motion to steady, time‐independent motion to temporally oscillatory, chaotic motion. With the use of a feedback controller effecting small perturbations in the boundary conditions, one can maintain the no‐motion state at significantly higher temperature differences than the critical one corresponding to the onset of convection in the uncontrolled system. Alternatively, one can maintain steady, time‐independent flow under conditions in which the flow would otherwise be chaotic. That is, the controller can be used to suppress chaos. Likewise, it is possible to stabilize periodic nonstable orbits that exist in the chaotic regime of the uncontrolled system. Finally, the contro...
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