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Control of Separated Flow Using Actuated Compliant Membrane Wings

机译:使用致动柔性膜翅片控制分离流

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摘要

Membrane wings exhibit several aerodynamic advantages at low Reynolds numbers, passively adapting to flow conditions and delaying stall to significantly higher angles of attack relative to rigid wings. Rigid wings, on the other hand, often rely on active flow control mechanisms to achieve high angles of attack, injecting momentum to induce vortex roll-up in the shear layer. Active flow control for membrane wings is limited by the flexible nature of the wing surface. However, it is possible to achieve active flow control with a membrane wing by using a dielectric elastomer actuator as the membrane material. In this work, the performance of a sinusoidally actuated membrane wing is characterized for a range of actuation frequencies, freestream velocities, and angles of attack. Lift measurements show lift enhancement of up to 20%. Time-resolved membrane kinematics are used to calculate the coefficient of added momentum of the actuator, and the effect on the flow field is shown using phase-averaged particle image velocimetry measurements. Dynamic mode decomposition is used to show vortical structures being shed from the leading edge in phase with actuation, and comparisons are made with synthetic jet literature to show the similarities to separated flow control techniques used on rigid wings.
机译:薄膜机翼在低雷诺数下具有多种空气动力学优势,可以被动地适应流动条件,并且相对于刚性机翼,能够将失速延迟到更大的迎角。另一方面,刚性机翼通常依靠主动流控制机制来实现大迎角,从而注入动量以在剪切层中引起涡旋卷起。薄膜机翼的主动流量控制受到机翼表面柔韧性的限制。然而,通过使用介电弹性体致动器作为膜材料,可以利用膜翼实现主动的流量控制。在这项工作中,正弦驱动的膜翼的性能针对一系列致动频率,自由流速度和迎角而定。升力测量结果显示升力高达20%。时间分辨膜运动学用于计算执行器附加动量的系数,并使用相位平均颗粒图像测速仪测量显示对流场的影响。动态模式分解用于显示旋涡结构从前缘开始与驱动作用同相脱落,并与合成射流文献进行比较,以显示与刚性机翼上使用的分离式流量控制技术的相似性。

著录项

  • 来源
    《AIAA Journal》 |2019年第9期|3801-3811|共11页
  • 作者单位

    Brown Univ Sch Engn 182 Hope St Providence RI 02912 USA|Naval Undersea Warfare Ctr Div Newport 1176 Howell Ave Newport RI 02841 USA;

    Brown Univ Sch Engn 182 Hope St Providence RI 02912 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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