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Towards a Practical Synthetic Jet Actuator for Industrial Scale Flow Control Applications

机译:朝向工业规模流量控制应用的实用合成射流执行器

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The global evolution of the aerospace market is driving flow control research towards full industrial scale applications. In this approach, technologies need to demonstrate effectiveness, as well as compliance with the aircraft performance constraints. The design of a synthetic-jet-based system for a civil transport aircraft would provide an early understanding on the viability and potential applications of the technology. This study characterises experimentally an optimised piezoelectric-based synthetic jet actuator (SJA). Three full scale systems were developed for an A321: a flap, a slat and a cruise, both for separation and shock control. The systems were designed based both on experimental results and on an extensive hardware research. The laboratory optimisation of SJAs has led to the achievement of peak velocities of 130 m/s and peak conversion efficiencies of around 15%. All systems presented power and weight requirements within the aircraft performance budget, where the flap system resulted in the lowest values. The question that still remains is whether or not the performance benefits will outweigh the system costs.
机译:航空航天市场的全球演变正在推动全工业规模应用的流量控制研究。在这种方法中,技术需要展示有效性,以及遵守飞机性能约束。用于公民运输机的合成喷射系统的设计将对技术的可行性和潜在应用提供早期理解。本研究表征了实验优化的压电基合成射流执行器(SJA)。为A321开发了三种全规模系统:一个襟翼,板块和巡航,用于分离和冲击控制。该系统是基于实验结果和广泛的硬件研究设计的。 SJA的实验室优化导致峰值速度为130米/秒,峰值转化效率约为15%。所有系统在飞机性能预算内提出了电源和重量要求,襟翼系统导致值最低。仍然存在的问题是表现效益是否会超过系统成本。

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