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Computational Evaluation of the Steady and Pulsed Jet Effects on the Performance of a Circulation Control Wing Section

机译:稳态和脉冲射流对循环控制机翼段性能的计算评估

摘要

Circulation Control technology is a very effective way of achieving high lift forces required by aircraft during take-off and landing. This technology can also directly control the flow field over the wing. Compared to a conventional high-lift system, a Circulation Control Wing (CCW) can generate comparable or higher lift forces during take-off/landing with fewer or no moving parts and much less complexity. In this work, an unsteady three-dimensional Navier-Stokes analysis procedure has been developed and applied to Circulation Control Wing configurations. The effects of 2-D steady jets and 2-D pulsed jets on the aerodynamic performance of CCW airfoils have been investigated. It is found that a steady jet can generate very high lift at zero angle of attack without stall, and that a small amount of blowing can eliminate vortex shedding at the trailing edge, a potential noise source. It is also found that a pulsed jet can achieve the same high lift as a steady jet at lower mass flow rates, especially at a high frequency, and that the Strouhal number has a more dominant effect on the pulsed jet performance than just the frequency or the free-stream velocity.
机译:循环控制技术是一种非常有效的方法,可以在起飞和着陆期间获得飞机所需的高升力。该技术还可以直接控制机翼上的流场。与传统的高升力系统相比,循环控制翼(CCW)在起飞/着陆期间可产生相当或更高的升力,而运动部件更少或没有,复杂性也大大降低。在这项工作中,开发了一种不稳定的三维Navier-Stokes分析程序,并将其应用于循环控制机翼配置。研究了二维稳定射流和二维脉冲射流对逆流翼型气动性能的影响。已经发现,稳定的射流可以在零迎角处产生非常高的升力而不会失速,并且少量吹气可以消除后缘的涡旋脱落,这是潜在的噪声源。还发现,脉冲射流在较低的质量流量下,尤其是在高频下,可以达到与稳定射流相同的高升力,并且斯特劳哈尔数对脉冲射流性能的影响比仅仅频率或频率更重要。自由流速度。

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