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Resonance-based low-frequency synthetic jet actuator modeling, design, and testing

机译:基于共振的低频合成射流执行器建模,设计和测试

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Synthetic Jet Actuators have been the topic of extensive study in the aerospace industry because of their ability to actively control flow over aerodynamic surfaces without discrete control surfaces such as a flap. One challenge has been to develop a low frequency, lightweight actuator that can provide large displacements. This study will discuss the modeling, design, manufacture, and testing of a bimorph piezo-composite actuator that will provide such displacements at low frequencies. The design employs two opposing benders that provide a piston-type motion. The initial goals of this study were to achieve 30 m/s out of the slot while maintaining the mechanical resonant frequency of the system at about 100 Hz.
机译:合成射流执行器一直是航空航天行业广泛研究的主题,因为它们能够积极控制空气动力学表面的流动,而没有离散的控制表面如襟翼。一项挑战是开发出低频,轻质执行器,可以提供大型位移。本研究将讨论Bimorph压电复合致动器的建模,设计,制造和测试,该致动器将在低频下提供这种位移。该设计采用两个相对的弯管,提供活塞式运动。本研究的初始目标是在槽中实现30米/ s,同时保持系统的机械谐振频率约为100 Hz。

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