年次大会講演論文集
Online ISSN : 2433-1325
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1533 GA を用いた壁乱流フィードバック制御システムの開発に関する研究
吉野 崇鈴木 雄二笠木 伸英
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会議録・要旨集 フリー

p. 37-38

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A prototype system for feedback control of wall turbulence is developed, and its performance is evaluated in a physical experiment. Arrayed micro hot-film sensors with 1mm spanwise spacing are employed for the measurement of streamwise shear stress fluctuations, while arrayed magnetic actuators of 3mm in diameter are used to introduce control input through wall deformation. The frequency response of the sensors and actuators is found to be sufficiently high for the flow conditions presently considered. The wall-normal velocity fluctuations above the actuator is significantly increased, and this indicates that the present actuators can introduce sufficiently large disturbances into the flow field. A preliminary feedback control experiment is also made using a genetic algorithms-based optimal control scheme. Although the number of generations is much smaller than that for convergence, the Reynolds shear stress is decreased for several sets of control parameters among 50 trials.
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© 2002 一般社団法人日本機械学会
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