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Structural Health Monitoring of Transport Aircraft with Fuzzy Logic Modeling

机译:基于模糊逻辑模型的运输飞机结构健康监测

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摘要

A structural health monitoring method based on the concept of static aeroelasticity is presented in this paper. This paper focuses on the estimation of these aeroelastic effects on older transport aircraft, in particular the structural components that are most affected, in severe atmospheric turbulence. Because the structural flexibility properties are mostly unknown to aircraft operators, only the trend, not the magnitude, of these effects is estimated. For this purpose, one useful concept in static aeroelastic effects for conventional aircraft structures is that under aeroelastic deformation the aerodynamic center should move aft. This concept is applied in the present paper by using the fuzzy-logic aerodynamic models. A twin-jet transport aircraft in severe atmospheric turbulence involving plunging motion is examined. It is found that the pitching moment derivatives in cruise with moderate to severe turbulence in transonic flight indicate some degree of abnormality in the stabilizer (i.e., the horizontal tail). Therefore, the horizontal tail is the most severely affected structural component of the aircraft probably caused by vibration under the dynamic loads induced by turbulence.
机译:提出了一种基于静态气动弹性概念的结构健康监测方法。本文着重于评估这些空气弹性对老式运输机的影响,特别是在严重的大气湍流中受影响最大的结构部件。由于航空器运营人几乎不了解结构柔韧性,因此只能估计这些影响的趋势而不是幅度。为此,对于常规飞机结构而言,在静态气动弹性效应中一个有用的概念是,在气动弹性变形下,气动中心应向后移动。通过使用模糊逻辑空气动力学模型将这一概念应用到本文中。检查了一种双喷气运输飞机,该飞机在剧烈的大气湍流中涉及俯冲运动。发现跨音速飞行中具有中等到严重湍流的巡航中的俯仰力矩导数表明稳定器(即水平尾翼)有某种程度的异常。因此,水平尾翼是飞机上受影响最严重的结构部件,可能是由湍流引起的动载荷作用下的振动引起的。

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  • 来源
    《Mathematical Problems in Engineering》 |2013年第7期|640852.1-640852.11|共11页
  • 作者

    Ray C. Chang; C. Edward Lan;

  • 作者单位

    Department of Aviation Mechanical Engineering, China University of Science and Technology, Hengshan 312, Taiwan;

    Department of Aerospace Engineering University of Kansas, Lawrence, KS 66045, USA;

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  • 正文语种 eng
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