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Transonic flutter study of a wind-tunnel model of a supercritical wing with/without winglet

机译:带/不带小翼的超临界机翼风洞模型的跨音速扑动研究

摘要

The model was a 1/6.5-size, semipan version of a wing proposed for an executive-jet-transport airplane. The model was tested with a normal wingtip, a wingtip with winglet, and a normal wingtip ballasted to simulate the winglet mass properties. Flutter and aerodynamic data were acquired at Mach numbers (M) from 0.6 to 0.95. The measured transonic flutter speed boundary for each wingtip configuration had roughly the same shape with a minimum flutter speed near M=0.82. The winglet addition and wingtip mass ballast decreased the wing flutter speed by about 7 and 5 percent, respectively; thus, the winglet effect on flutter was more a mass effect than an aerodynamic effect.
机译:该模型是提议用于执行喷气运输飞机的机翼的1 / 6.5尺寸的半盘版本。使用正常翼尖,带有小翼的翼尖和经压载以模拟小翼质量特性的正常翼尖进行测试。在0.6至0.95的马赫数(M)下获得了颤振和空气动力学数据。对于每种翼尖构型,测得的跨音速扑动速度边界具有大致相同的形状,最小扑动速度接近M = 0.82。小翼增加和翼尖质量压载使机翼颤动速度分别降低了约7%和5%。因此,小翼对颤振的影响更多是质量效应,而不是空气动力学效应。

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