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首页> 外文期刊>Contributions to Plasma Physics >Aerodynamic and energy-efficiency-based assessment of plasma actuator's position on a NACA0015 airfoil
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Aerodynamic and energy-efficiency-based assessment of plasma actuator's position on a NACA0015 airfoil

机译:基于空气动力学和能量效率的等离子体执行器在NACA0015翼型上的位置评估

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摘要

In recent years, there has been an increase in the number of research papers on plasma and its use in active flow control applications. The main objective of this study is to assess the plasma actuator's position on a NACA0015 airfoil in terms of aerodynamic forces. In addition, optimization of the plasma actuator's position and its configuration are studied in order to identify the optimum configuration for improvement in lift coefficient. The experiments are conducted in an open-suction-type wind tunnel at Reynolds numbers of 48,000, 75,000, and 100,000. The plasma actuators are mounted on various positions (x/C) starting from the leading edge to trailing edge of the airfoil. The experimental results on aerodynamic force measurement are presented to illustrate the increasing lift effect of the generated plasma. It is also shown that the plasma actuators used as an active flow control device appears to shift the stall angle of the airfoil. The results of the experimental study suggest that the energy efficiency of airborne systems can be improved with the use of plasma actuators due to its increasing lift coefficient effect. This result becomes a vital finding considering that the same flight can be achieved with less fuel and less amount of environmental pollution for the same distance of journey. It is also worth mentioning that increasing lift effect would mean taking off from a shorter runway or allowing the airborne vehicle with the ability to fly with additional payload.
机译:近年来,血浆研究论文数量增加及其在主动流量控制应用中的应用。本研究的主要目的是在空气动力方面评估等离子体执行器对NACA0015翼型的位置。另外,研究了等离子体致动器的位置及其配置的优化,以确定提高升力系数的最佳配置。实验在雷诺数48,000,75,000和100,000的雷诺数的开口式风洞中进行。等离子体致动器安装在从翼型的前缘到后缘开始的各种位置(X / C)。提出了对空气动力测量的实验结果以说明所产生的等离子体的提升效果的增加。还示出了用作有源流量控制装置的等离子体致动器似乎使翼型的失速角换档。实验研究的结果表明,由于升力系数效应的增加,通过使用等离子体致动器可以提高空气传播系统的能量效率。考虑到同一班飞行可以通过较少的燃料和较少的环境污染来实现同一行程的环境污染,这一结果成为一个至关重要的发现。值得一提的是,提升升力效果将意味着从较短的跑道起飞或允许空中车辆能够使用额外的有效载荷飞行。

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