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Computational Evaluation of Aerodynamic Loading on Retractable Landing-Gears

机译:可伸缩升降齿轮空气动力载荷的计算评估

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Computational fluid dynamics is employed to evaluate the mean aerodynamic loading on the retractable landing-gears of a regional transport commercial aircraft. The mean turbulent flow around simplified landing-gear systems including doors is simulated by using the Reynolds-averaged Navier–Stokes approach, where the governing equations are solved with a finite volume-based numerical method. Using a dynamic meshing method, the computational grid is automatically and continuously adapted to the time-changing geometry, while following the extension/retraction of the landing-gear systems. The temporal evolution of the aerodynamic forces on both the nose and the main landing-gears, along with the hinge moments of the doors, is numerically predicted. The proposed computational modeling approach is verified to have good practical potential when compared with reference experimental data provided by the Leonardo Aircraft structural loads group.
机译:采用计算流体动力学来评估区域运输商用飞机的可伸缩升降档的平均空气动力负载。通过使用雷诺平均的Navier-Stokes方法模拟包括门的简化着陆齿轮系统周围的平均湍流,其中控制方程用基于有限体积的数值方法来解决。使用动态网格化方法,计算网格自动且连续地适应时间改变的几何形状,同时跟随着陆齿轮系统的扩展/缩回。在数值上预测了鼻子和主着陆齿轮上的空气动力的时间演变,以及门的铰链矩。与由Leonardo飞机结构负载组提供的参考实验数据相比,验证所提出的计算建模方法具有良好的实际潜力。

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