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Geometry and Reynolds-Number Scaling on an Iced Business-Jet Wing

机译:商用喷气机翼上的几何形状和雷诺数缩放

摘要

A study was conducted to develop a method to scale the effect of ice accretion on a full-scale business jet wing model to a 1/12-scale model at greatly reduced Reynolds number. Full-scale, 5/12-scale, and 1/12-scale models of identical airfoil section were used in this study. Three types of ice accretion were studied: 22.5-minute ice protection system failure shape, 2-minute initial ice roughness, and a runback shape that forms downstream of a thermal anti-ice system. The results showed that the 22.5-minute failure shape could be scaled from full-scale to 1/12-scale through simple geometric scaling. The 2-minute roughness shape could be scaled by choosing an appropriate grit size. The runback ice shape exhibited greater Reynolds number effects and could not be scaled by simple geometric scaling of the ice shape.
机译:进行了一项研究以开发一种方法,该方法可在雷诺数大大减少的情况下,将全尺寸公务机机翼模型上积冰的影响比例缩放为1/12比例模型。本研究使用相同机翼截面的全比例模型,5/12比例模型和1/12比例模型。研究了三种类型的积冰:22.5分钟的防冰系统故障形状,2分钟的初始冰粗糙度和在防热冰系统下游形成的反冲形状。结果表明,可以通过简单的几何缩放将22.5分钟的破坏形状从完整比例缩放为1/12。可以通过选择合适的粒度来缩放2分钟的粗糙度形状。回流的冰形表现出更大的雷诺数效应,无法通过简单的冰形几何缩放来缩放。

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