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Unsteady Aerodynamic Modeling in Roll for the NASA Generic Transport Model

机译:NASA通用运输模型的滚动非定常气动模型

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Reducing the impact of loss-of-control conditions on commercial transport aircraft is a primary goal of the NASA Aviation Safety Program. One aspect in developing the supporting technologies is to improve the aerodynamic models that represent these adverse conditions. Aerodynamic models appropriate for loss of control conditions require a more general mathematical representation to predict nonlinear unsteady behaviors. In this paper, a more general mathematical model is proposed for the subscale NASA Generic Transport Model (GTM) that covers both low and high angles of attack. Particular attention is devoted to the stall region where full-scale transports have demonstrated a tendency for roll instability. The complete aerodynamic model was estimated from dynamic wind tunnel data. Advanced computational methods are used to improve understanding and visualize the flow physics within the region where roll instability is a factor.
机译:减少失控条件对商用运输飞机的影响是NASA航空安全计划的主要目标。开发支持技术的一个方面是改进代表这些不利条件的空气动力学模型。适用于失去控制条件的空气动力学模型需要更通用的数学表示法来预测非线性不稳定行为。在本文中,为涵盖低攻角和高攻角的NASA通用运输模型(GTM)提出了更通用的数学模型。特别关注的是失速区域,在该区域全面运输已显示出侧倾不稳定的趋势。完整的空气动力学模型是根据动态风洞数据估算的。先进的计算方法用于改善对侧倾不稳定性成因的区域内流动物理的理解和可视化。

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