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Effects of Propeller Slipstream of Distributed Electric Propulsion on the Wing-Flap System

机译:分布式电力推进器螺旋桨滑流对翼瓣系统的影响

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The studies are aimed at investigating the mechanism to ensure the high lift by installing propellers in front of the wing and using interference effects. The model of the wing section of a regional STOL aircraft with DEPSis considered. The wing section is equipped with a trailing edge device (Fowler flap) and DEPS consisting of motors with propellers. Parametric and experimental studies of the interaction between DEPS propellers and the regional STOL aircraft wing-flap system were carried out. The development and verification of aerodynamic calculation method for the wing section at low Reynolds numbers were performed. The comparison with the wind tunnel test data obtained at TSAGI was made. It was found that: - for fixed power of propellers there is an optimal propeller diameter ensuring maximum increase in the wing section lift; - at low thrust the total lift weakly depends on DEPS inclination angle.
机译:这些研究旨在研究通过在机翼前安装螺旋桨并利用干扰效应来确保高升力的机制。考虑了带有DEPS的地区性STOL飞机的机翼截面模型。机翼部分装有后缘装置(福勒襟翼)和DEPS,由带有螺旋桨的电动机组成。进行了DEPS螺旋桨与区域STOL飞机机翼-襟翼系统之间相互作用的参数和实验研究。对低雷诺数的机翼截面进行了气动计算方法的开发和验证。与在TSAGI获得的风洞测试数据进行了比较。发现:-对于螺旋桨的固定功率,有一个最佳的螺旋桨直径,可确保最大的机翼截面升力; -在低推力下,总升程几乎取决于DEPS倾斜角。

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