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Numerical Studies of an Array of Fluidic Diverter Actuators for Flow Control

机译:用于流量控制的流体分流执行器阵列的数值研究

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In this paper, we study the effect of boundary conditions on the behavior of an array of uniformly-spaced fluidic diverters with an ultimate goal to passively control their output phase. This understanding will aid in the development of advanced designs of actuators for flow control applications in turbomachinery. Computations show that a potential design is capable of generating synchronous outputs for various inlet boundary conditions if the flow inside the array is initiated from quiescence. However, when the array operation is originally asynchronous, several approaches investigated numerically demonstrate that re-synchronization of the actuators in the array is not practical since it is very sensitive to asymmetric perturbations and imperfections. Experimental verification of the insights obtained from the present study is currently being pursued.
机译:在本文中,我们研究了边界条件对均匀间隔的流体分流器阵列行为的影响,最终目的是被动地控制其输出相位。这种理解将有助于为涡轮机械中的流量控制应用开发执行器的高级设计。计算表明,如果阵列内部的流动是从静态开始的,则潜在的设计能够针对各种入口边界条件生成同步输出。然而,当阵列操作本来是异步的时,数种方法的研究表明,阵列中致动器的重新同步是不切实际的,因为它对不对称扰动和缺陷非常敏感。目前正在对从本研究中获得的见解进行实验验证。

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