Computational Icing Risk Analysis of the D8 “Double Bubble” Aircraft

Christopher E. Porter, M. Potapczuk
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引用次数: 2

Abstract

A computational icing risk analysis utilizing LEWICE3D was performed for the D8 Double Bubble aircraft. A variety of discrete drop sizes spanning the Appendix C and O regimes were simulated. For computational efficiency a 50-bin global discretization was produced and projected onto the distributions of interest, eliminating redundant simulations. The trajectory and impingement characteristics for discrete drop diameters were analyzed to help understand the behavior of the water drops in the presence of a complex flow field. The collection efficiency results for the discrete drop diameters were then weighted by their contributions to the total water content of six different continuous distributions and subsequently superposed to approximate these curves. Results indicate that significant variation in impingement exists as a function of drop diameter for complex wing body geometries, and that current discretization practices may be insufficient to accurately predict water collection on certain regions of the aircraft. Results also indicate that the Appendix O distributions, specifically those with considerable water content at large drops, generates water collection patterns that are markedly different from distributions representative of Appendix C.
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D8“双泡”飞机结冰风险计算分析
利用LEWICE3D软件对D8双泡飞机进行了结冰风险分析。模拟了附录C和附录O区域的各种离散液滴大小。为了提高计算效率,产生了一个50 bin的全局离散化,并将其投影到感兴趣的分布上,从而消除了冗余的模拟。分析了离散水滴直径的轨迹和撞击特性,以帮助理解复杂流场中水滴的行为。然后将离散水滴直径的收集效率结果按其对六个不同连续分布的总含水量的贡献进行加权,并随后叠加以近似这些曲线。结果表明,对于复杂的翼身几何形状,水滴直径对撞击的影响存在显著变化,目前的离散化方法可能不足以准确预测飞机某些区域的水收集情况。结果还表明,附录O的分布,特别是在大水滴处含水量较大的分布,产生的水收集模式与附录C的分布有明显不同。
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