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Numerical Investigation of Leading Edge Blowing and Optimization of the Slot Geometry for a Circulation Control Airfoil

机译:循环控制翼型槽几何优化的数值研究

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Numerical simulations for the aerodynamic analysis of a two-dimensional circulation control airfoil at high Reynolds numbers have been carried out. Circulation control systems need a relatively high amount of power to provide the necessary pressurized air. Hence major design paramters as slot height and additional blowing at the nose have been varied to improve the efficiency of the circulation control airfoil. The results show that a significant increase of the efficiency is possible. Additional blowing at the nose protects the leading edge against stalling at lower Mach numbers to enable very high lift coefficients. By variation of the slot height for some configurations the required momentum coefficient of the air jet could be reduced by about 20% at slightly lower lift coefficients.
机译:已经进行了高雷诺数的二维循环控制翼型的空气动力学分析的数值模拟。循环控制系统需要相对较高的功率来提供必要的加压空气。因此,主要的设计参数作为槽高,鼻子的额外吹吹气已经变化,以提高循环控制翼型的效率。结果表明,效率的显着增加是可能的。在鼻子的额外吹风保护前缘在下部马赫数下停滞,以实现非常高的提升系数。通过对某些配置的槽高的变化,空气射流的所需动量系数可以在稍低的提升系数下减小约20%。

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