首页> 外文会议>Congress of the International Council of the Aeronautical Sciences;ICAS 2008 >ALLEVIATION OF ATMOSPHERIC FLOW DISTURBANCE EFFECTS ON AIRCRAFT RESPONSE
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ALLEVIATION OF ATMOSPHERIC FLOW DISTURBANCE EFFECTS ON AIRCRAFT RESPONSE

机译:减轻大气流动扰动对飞机响应的影响

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Since the air is the element of flying, air motion is an essential parameter in aeronautics. This paper gives an overview of the results of offline simulations, full flight simulator studies and results from in-flight simulation experiments to investigate the alleviation of atmospheric flow disturbance effects on aircraft response. The studies are part of the DLR project "Weather and Aviation" aiming at the improvement of flight operation and safety in adverse weather conditions.Gusts and turbulence strongly affect the passenger comfort and the safety of aircraft. Another important air mass motion adversely affecting aircraft operation is wake vortex. This well known hazardous flow field is produced by aircraft themselves. Active control technology can be applied to alleviate these flow disturbance effects on aircraft motion in case of an encounter.DLR is developing the Integrated Ride and Loads Improvement System (IRLIS) to cope with the phenomena mentioned above. It can be shown that the aircraft response encountering natural and aircraft-induced (wake vortex) turbulence can be improved significantly by a feed-forward controller. Based on a forward-looking sensor, the controller generates aerodynamic surface deflections to counter the vertical accelerations generated by gusts as well as the roll response induced by lift variations along the wing span. For this investigation it is assumed that a LIDAR sensor is able to provide the necessary flow field information ahead of the a/c. In addition to the standard control surfaces (elevator, aileron and rudder) the a/c is supposed to be equipped with special flaps for independent direct lift control. Simulation results show a clear tendency that IRLIS can significantly improve the situation in adverse atmospheric flow fields.
机译:由于空气是飞行的要素,因此空气运动是航空业的重要参数。本文概述了脱机模拟的结果,完整的飞行模拟器研究以及飞行中模拟实验的结果,以研究减轻大气流扰动对飞机响应的影响。这些研究是DLR项目“天气和航空”的一部分,旨在改善恶劣天气条件下的飞行操作和安全性。 阵风和湍流极大地影响了乘客的舒适度和飞机的安全性。另一个对飞机运行产生不利影响的重要空气运动是尾涡。这种众所周知的危险流场是由飞机本身产生的。遇到事故时,可以采用主动控制技术来减轻这些扰动对飞机运动的影响。 DLR正在开发综合乘车和负载改善系统(IRLIS),以应对上述现象。可以证明,通过前馈控制器可以显着改善遇到自然和飞机引起的(尾涡)湍流的飞机响应。控制器基于前瞻性传感器,产生空气动力学表面挠度,以抵消阵风产生的垂直加速度以及由沿机翼跨度的升力变化引起的侧倾响应。为了进行此研究,假设LIDAR传感器能够在a / c之前提供必要的流场信息。除了标准的操纵面(电梯,副翼和方向舵)外,空调还应配备特殊的襟翼,以便进行独立的直接升力控制。仿真结果表明,IRLIS可以明显改善不利的大气流场中的情况,这是一个明显的趋势。

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