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ALLEVIATION OF ATMOSPHERIC FLOW DISTURBANCE EFFECTS ON AIRCRAFT RESPONSE

机译:减轻航空器反应的大气流扰动效应

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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:由于空气是飞行的元素,空气运动是航空中的必要参数。本文概述了离线模拟的结果,全飞行模拟器研究和来自飞行中的模拟实验的结果,以调查对飞机应答的大气流动扰动效应的缓解。研究是DLR项目的一部分“天气和航空”,旨在改善飞行运行和安全性的安全性。阵风和湍流强烈影响乘客的舒适和飞机的安全性。另一个重要的空气质量运动不利地影响飞机运行是令人遗憾的涡旋。这种众所周知的危险流场是由飞机本身产生的。在遇到的情况下,可以应用主动控制技术来缓解对飞机运动的这些流动扰动效应。 DLR正在开发综合骑行和载荷改进系统(IRLIS)以应对上述现象。可以证明,通过前馈控制器可以显着提高遇到自然和飞机诱导的飞机应答(唤醒涡旋)湍流。基于前瞻性传感器,控制器产生空气动力学表面偏转,以对抗阵风产生的垂直加速度以及通过沿着翼跨度的提升变化引起的辊响应。对于该研究,假设LIDAR传感器能够在A / C之前提供必要的流场信息。除了标准控制表面(电梯,Aileron和舵)外,A / C应该配备有独立直接电梯控制的特殊襟翼。仿真结果表明,IRLIS可以显着改善不良大气流场的情况。

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