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Crosswise Wind Shear Represented as a Ramped Velocity Profile Impacting a Forward-Moving Aircraft

机译:横向风剪,表示为冲击前移动飞机的斜坡速度曲线

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摘要

Abrupt changes in wind velocities over small distances in a lateral or vertical direction can produce wind shear which is known to have serious effects upon the performance of an aircraft. Brought about by large-scale changes in the atmospheric conditions, it is a three-dimensional flow phenomenon imposing severe velocity gradients on an aircraft from all possible directions. While it would be difficult to model an instantaneous velocity gradient in a lateral plane, a vortical flow impinging from the sides which represents a wind shear in a vertical direction is imposed on a forward-moving aircraft to investigate the effect on the aerodynamic performance. The maximum shear wind speed from the side was fixed at 0.3 times the forward velocity. After due validations under no-wind shear conditions on simpler half-reflection plane models, a BGK airfoil-based full 3D wing and the ONERA M6 3D wing model were selected for preliminary studies. The investigation was concluded using the ARA M100 wing-fuselage model.
机译:在横向或垂直方向上的小距离上的风速的突然变化可以产生风剪,该风剪已知对飞机的性能具有严重影响。通过大气条件的大规模变化带来,它是一种三维流动现象,从所有可能的方向施加飞机上的严重速度梯度。虽然在横向平面中难以模拟瞬时速度梯度,但是在前进移动飞机上施加撞击从表示风剪切的侧面的侧面的涡流,以研究对空气动力学性能的影响。从侧面的最大剪切风速固定在前向速度的0.3倍。在较简单的半反射平面模型下的无风剪切条件下的适当验证之后,选择了基于BGK翼型的全3D机翼和Onera M6 3D翼模型进行初步研究。使用ARA M100 Wive-FuseRage模型结束了调查。

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