Aircraft Distributed Flow Turbulence Sensor Network with Embedded Flow Control Actuators

L. Francioso, C. Pascali, P. Siciliano, M. D. Giorgi, E. Pescini, A. Ficarella
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引用次数: 12

Abstract

Several active and passive flow control systems are studied to improve the performances of fluid machineries and to increase aerodynamic efficiency of propulsion systems. Among all the well-known active flow control devices, the dielectric barrier discharge plasma actuator (PA) is in full expansion and of great interest in the scientific community. A PA modifies the following behaviour of a fluid by providing an electronically controllable disturbance that brings to drag reduction, flow separation control, enhanced mixing, and noise suppression. PA is potentially easy to construct, has no moving parts and has low power requirements. This leads to its possible applications for separation control in low pressure turbine blade and compressor cascade, tip clearance flow control and compressor stability range extension. The present work reports the design and fabrication of cheap Kapton-based flow turbulence capacitive sensors able to be embedded into aircraft wing profiles and airfoil structures for critical turbulence conditions detection and early-detected separated flows control. The embedded system will provide a Kapton-foil based pressure detection and linear/synthetic jet plasma actuators working in feedback, for prevention and active reduction of separated flow for regional aircraft applications.
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带有嵌入式流量控制执行器的飞机分布式流量湍流传感器网络
为了改善流体机械的性能和提高推进系统的气动效率,研究了几种主动和被动流动控制系统。在众多知名的主动流量控制装置中,介质阻挡放电等离子体作动器(PA)正处于全面发展阶段,引起了科学界的极大兴趣。PA通过提供电子可控扰动来改变流体的以下行为,从而减少阻力、控制流动分离、增强混合和抑制噪声。PA可能很容易建造,没有运动部件,功率要求低。这使得它在低压涡轮叶片和压气机叶栅的分离控制、叶尖间隙流动控制和压气机稳定范围扩展等方面有了可能的应用。本工作报告了廉价的基于卡普顿的流动湍流电容传感器的设计和制造,该传感器能够嵌入到飞机机翼剖面和翼型结构中,用于临界湍流条件检测和早期检测的分离流动控制。嵌入式系统将提供基于kapton箔的压力检测和反馈工作的线性/合成射流等离子体执行器,用于预防和主动减少支线飞机应用中的分离流。
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