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首页> 外文期刊>The Aeronautical Journal >Development of ground vibration test based flutter emulation technique
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Development of ground vibration test based flutter emulation technique

机译:基于地面振动测试的颤动仿真技术的发展

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摘要

In demand of simpler and alternative ground flutter test, a new technique that emulates flutter on the ground has recently emerged. In this paper, an improvement of the test technique is made and verified through the experimental work. The technique utilizes general ground vibration test (GVT) devices. The key idea is to emulate the distributed unsteady aerodynamic force by using a few concentrated actuator forces; referred to as emulated flutter test (EFT) technique. The EFT module contains two main logics; namely, real-time aerodynamic equivalent force calculator and multi-input-multi-output (MIMO) force controller. The module is developed to emulate the subsonic, linear flutter on a specified target structure, which is a thin aluminum clamped-plate with aspect ratio (AR) of 2.25. In this study, doublet hybrid method (DHM) was applied to model the subsonic aerodynamic force, which restricts the application to a 2-dimensional structure. Given that, correlation of several experimental works, such as wind-tunnel flutter test, EFT using laser displacement sensor (LDS), and EFT using accelerometer, on the target structure are investigated to verify the technique. In addition to the flutter boundary, flutter mode shape and trend of aerodynamic damping effect are also presented in this work. Together with these various kinds of test results, application of more compact actuator and an accelerometer as a sensor, makes the current technique the most advanced ground flutter emulation test method.
机译:根据更简单和替代的地面颤动测试,最近出现了一种仿真地颤动的新技术。在本文中,通过实验工作进行了对测试技术的改进。该技术利用通用地面振动试验(GVT)器件。关键思想是通过使用几个浓缩的致动器力来模拟分布式不稳定的空气动力学力;被称为模拟颤动测试(EFT)技术。 EFT模块包含两个主要逻辑;即,实时空气动力等效力计算器和多输入多输出(MIMO)力控制器。该模块被开发以模拟指定目标结构上的亚音速,线性颤动,其是具有2.25的纵横比(AR)的薄铝夹板。在该研究中,将双重式混合方法(DHM)应用于模拟亚音速空气动力力,这将应用限制为二维结构。鉴于此,研究了若干实验工程的相关性,如风洞扑振试验,使用激光位移传感器(LDS)的EFT和使用加速度计的EFT,以验证该技术。除了颤音边界,还在这项工作中介绍了空气动力学阻尼效果的颤动模式形状和趋势。与这些各种测试结果一起,使用更紧凑的执行器和加速度计作为传感器,使电流技术成为最先进的地面颤动仿真试验方法。

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