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CFD Analysis of the Aerodynamics of a Business-Jet Airfoil with Leading-Edge Ice Accretion

机译:具有前沿冰积的公务机翼型的空气动力学CFD分析

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摘要

For rime ice - where the ice buildup has only rough and jagged surfaces but no protruding horns - this study shows two dimensional CFD analysis based on the one-equation Spalart-Almaras (S-A) turbulence model to predict accurately the lift, drag, and pressure coefficients up to near the stall angle. For glaze ice - where the ice buildup has two or more protruding horns near the airfoil's leading edge - CFD predictions were much less satisfactory because of the large separated region produced by the horns even at zero angle of attack. This CFD study, based on the WIND and the Fluent codes, assesses the following turbulence models by comparing predictions with available experimental data: S-A, standard k-epsilon, shear-stress transport, v(exp 2)-f, and differential Reynolds stress.
机译:对于霜冰-积冰只有粗糙和锯齿状的表面,而没有凸出的角-这项研究显示了基于一方程Spalart-Almaras(SA)湍流模型的二维CFD分析,可以准确地预测升力,阻力和压力系数直至失速角附近。对于釉冰-积冰在机翼的前缘附近有两个或多个突出的角-CFD预测远不能令人满意,因为角的分离区域很大,即使在零迎角时也是如此。此CFD研究基于WIND和Fluent代码,通过将预测与可用的实验数据进行比较来评估以下湍流模型:SA,标准k-ε,剪切应力传递,v(exp 2)-f和微分雷诺应力。

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