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Verifying Implementation of the Dryden Turbulence Model and MIL-F-8785 Gust Gradient

机译:验证Dryden湍流模型和MIL-F-8785阵风梯度的实现

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Turbulence modeling in human-in-the-loop simulation is important to assessing aircraft handling qualities and pilot performance and to provide additional realism for pilot training. In the simulation community, the Dryden turbulence spectra is a popular choice for modeling the linear turbulent gusts because its rational form is efficiently reproduced by passing white noise through linear filters. The MIL-F-8785 gust gradients similarly use additional linear filters to model the gradient of the turbulent gust over the wing, and it represents the gust gradients as perturbations to the air-relative rotational rates. The Cockpit Motion Facility at NASA Langley Research Center (LaRC) models continuous random turbulence using the Dryden one-dimensional spectra and MIL-F-8785 gust gradient. The facility recently reviewed and updated its verification of these models as part of an initiative to improve motion cueing under turbulence. This exercise introduced improved methods for verifying the turbulence models and led to rediscovery of model assumptions that informed improvements to implementation.
机译:在环仿真中的湍流建模对于评估飞机的操纵质量和飞行员性能以及为飞行员培训提供更多的真实感非常重要。在仿真界,Dryden湍流谱是建模线性湍流阵风的一种流行选择,因为它的合理形式可以通过使白噪声通过线性滤波器来有效地再现。 MIL-F-8785阵风梯度类似地使用附加的线性滤波器来模拟机翼上湍流阵风的梯度,并且它表示阵风梯度是对相对空气旋转速率的扰动。 NASA兰利研究中心(LaRC)的座舱运动设施使用Dryden一维光谱和MIL-F-8785阵风梯度对连续随机湍流进行建模。该工厂最近审查并更新了对这些模型的验证,以此作为改善湍流下运动提示的一项举措。该练习引入了改进的方法来验证湍流模型,并导致重新发现模型假设,从而为改进实施提供了依据。

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