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Analysis and Prediction of Ice Shedding for a Full-Scale Heated Tail Rotor

机译:全尺寸加热尾桨冰雪脱落的分析与预测

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When helicopters are to fly in icing conditions, it is necessary to consider the possibility of ice shed from the rotor blades. In 2013, a series of tests were conducted on a heated tail rotor at NASA Glenn's Icing Research Tunnel (IRT). The tests produced several shed events that were captured on camera. Three of these shed events were captured at a sufficiently high frame rate to obtain multiple images of the shed ice in flight that had a sufficiently long section of shed ice for analysis. Analysis of these shed events is presented and compared to an analytical Shedding Trajectory Model (STM). The STM is developed and assumes that the ice breaks off instantly as it reaches the end of the blade, while frictional and viscous forces are used as parameters to fit the STM. The trajectory of each shed is compared to that predicted by the STM, where the STM provides information of the shed group of ice as a whole. The limitations of the model's underlying assumptions are discussed in comparison to experimental shed events..
机译:当直升机在糖霜条件下飞行时,有必要考虑从转子叶片脱落的可能性。 2013年,在NASA Glenn冰的研究隧道(IRT)的加热尾桨上进行了一系列测试。测试产生了在相机上捕获的几个棚屋事件。这些棚事件中的三个以足够高的帧速率捕获,以获得飞行中的棚冰的多个图像,其具有足够长的棚冰剖面进行分析。呈现并与分析脱落轨迹模型(STM)进行了对这些棚屋事件的分析。 STM是开发的,并假设冰在到达刀片的末端时立即脱落,而摩擦和粘性力用作适合STM的参数。将每个SHED的轨迹与STM预测的轨迹进行比较,其中STM提供整体棚冰群的信息。与实验棚事件相比,讨论了模型潜在假设的局限性。

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