Experimental investigation in nonlinear aerodynamic characteristics of a double-layer truss girder

IF 3.5 2区 工程技术 Q1 ENGINEERING, MECHANICAL Journal of Fluids and Structures Pub Date : 2025-04-01 Epub Date: 2025-02-24 DOI:10.1016/j.jfluidstructs.2025.104284
Jiankun Li , Cunming Ma , Bo Wu , Ding Zeng
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Abstract

This study investigated the nonlinear aerodynamic characteristics of a double-layer truss girder at various angles of attack (AoAs) through section model wind tunnel tests. The free vibration test revealed a divergent hard flutter of the girder at 0° AoA and a self-limiting soft flutter of the girder at +3° and +5° AoAs, with responses primarily dominated by the fundamental frequency. The forced vibration test detected significant high-order harmonic components in the aerodynamic forces. Analysis of the hysteresis loops of each decomposed high-order harmonic affirmed the modification of these components on the system's energy exchange behavior over time, but refuted their impact on the occurrence of a limit cycle oscillation (LCO). Conversely, the consistency in the sign changes of the dimensionless aerodynamic work and the phase lag of the linear self-excited-moment to the torsional motion underscores the critical role of the phase difference in the occurrence of soft flutter and LCO. At last, the macroscopic energy distribution of the girder in different degrees of freedom (DOF) varies with amplitude and wind speed was quantified in terms of the three-dimensional (3D) energy map, which confirmed the consistency between the free and forced vibration tests on the section. This also revealed the fundamental mechanisms behind instability hysteresis and aerodynamic discrepancies under different DOF and AoAs.
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双层桁架梁非线性气动特性试验研究
通过截面模型风洞试验,研究了双层桁架梁在不同迎角下的非线性气动特性。自由振动试验表明,梁在0°AoA处存在发散型硬颤振,在+3°和+5°AoA处存在自限型软颤振,响应主要受基频支配。强迫振动试验检测出气动力中显著的高次谐波分量。对各分解高次谐波的磁滞回线的分析肯定了这些分量对系统能量交换行为随时间的改变,但驳斥了它们对极限环振荡(LCO)发生的影响。相反,无量纲气动功的符号变化与线性自激矩对扭转运动的相位滞后的一致性,强调了相位差在软颤振和LCO发生中的关键作用。最后,用三维能量图量化了梁在不同自由度下随振幅和风速变化的宏观能量分布,证实了截面上自由振动试验与强制振动试验的一致性。这也揭示了不同高度和高度下不稳定滞后和气动差异的基本机理。
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来源期刊
Journal of Fluids and Structures
Journal of Fluids and Structures 工程技术-工程:机械
CiteScore
6.90
自引率
8.30%
发文量
173
审稿时长
65 days
期刊介绍: The Journal of Fluids and Structures serves as a focal point and a forum for the exchange of ideas, for the many kinds of specialists and practitioners concerned with fluid–structure interactions and the dynamics of systems related thereto, in any field. One of its aims is to foster the cross–fertilization of ideas, methods and techniques in the various disciplines involved. The journal publishes papers that present original and significant contributions on all aspects of the mechanical interactions between fluids and solids, regardless of scale.
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