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Comparative Investigation on Effect of Droplet Deformation Models on SLD Icing

机译:对比较调查液滴变形模型对SLD结冰的影响

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It is well known that SLD (Supercooled Large Droplets) icing is very dangerous because it is more unpredictable than general icing caused by smaller droplets. In SLD conditions, a droplet deforms largely. Vargas et al. (2011) performed the experiments about the droplet deformation and they confirmed that the droplet deforms to an oblate spheroid, as the droplet approaches the leading edge of an airfoil. Therefore, the assumption that a droplet behaves as a sphere might be no longer valid. There are many models to predict the droplet deformation in which the deformation is described with the change of drag coefficient. For example, Hospers (2013) summarized the linear relations between the Reynolds number and the drag coefficient. Wiegand (1987) developed a model which uses a quasi-steady normal mode analysis of droplet deformation. However, the effect of the droplet deformation models on SLD icing simulations has not been completely clarified yet. Therefore, in the present study, the authors investigated the effect of the droplet deformation models on SLD icing simulations. The authors used a NACA0012 airfoil, and compared the numerical results with the NASA experiments. It was confirmed that the ice shape, the droplet impinging limit and the icing limit are influenced by the model of the drag coefficient.
机译:众所周知,SLD(过冷大液滴)结冰是非常危险的,因为它比由较小的液滴引起的普通糖化更令人难以预测。在SLD条件下,液滴在很大程度上变形。 vargas等人。 (2011)对液滴变形进行了实验,并且它们证实液滴变形为扁球砧,因为液滴接近翼型的前缘。因此,假设液滴表现为球体可能不再有效。有许多模型来预测液滴变形,其中通过拖动系数的变化描述了变形。例如,培养寡留者(2013)总结了雷诺数和拖动系数之间的线性关系。 Wiegand(1987)开发了一种使用液滴变形的准稳态正常模式分析的模型。然而,液滴变形模型对SLD结冰模拟的影响尚未完全阐明。因此,在本研究中,作者研究了液滴变形模型对SLD糖化模拟的影响。作者使用了NACA0012翼型,并将数值结果与NASA实验进行了比较。确认冰形,滴注瞬间和糖霜极限受拖曳系数模型的影响。

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