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Aerodynamic modeling for streamlined box girders using nonlinear differential equations and validation in actively generated turbulence

机译:基于非线性微分方程的流线型箱梁的空气动力学建模与积极产生的湍流验证

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摘要

In classical buffeting analysis theory, aerodynamic forces are usually expressed by a linear quasi-steady formula, and they are improved by aerodynamic admittances suitable for streamlined bridge girders. Recent studies have shown that admittances change obviously with incoming flow characteristics and aerodynamic nonlinearity, such as the frequency multiplication phenomenon, and motion-induced amplitude-related aerodynamic effects cannot be ignored in some cases. To address these problems, a nonlinear condensed subsystem equation (NCSE) suitable for wind-induced aerodynamic force modeling is established in the time domain. It characterizes aerodynamic nonlinearity with series of nonlinear differential equations and data-driven parameters. The proposed framework can be used for complex aerodynamic re-illustration related to the strong nonlinearity of streamlined box girders. To validate the precision and feasibility of the framework, sectional model experiments performed on a streamlined box girder were carried out in an active turbulence generated wind tunnel in which an adjustable array of multiple fans was assisted by actively controlled vibrating wings for a 2D turbulence condition. The case study shows that the NCSE model can be used to predict nonlinear aerodynamic forces in the time and frequency domains, even under complex stochastic flow conditions. The proposed method provides an alternative way to predict possible aerodynamics based on the condition of incoming flow with sufficient accuracy, and it can illustrate multifrequency components of aerodynamic forces.
机译:在经典的自频分析理论中,空气动力学通常由线性准稳态配方表示,并且通过适用于流线型桥梁梁的空气动力学进入来改善它们。最近的研究表明,在某些情况下,进入的流动特性和空气动力学非线性,诸如倍频现象的空气动力学非线性,以及运动引起的振幅相关的空气动力学效果。为了解决这些问题,在时域中建立适用于风力诱导的空气动力学力建模的非线性凝聚子系统方程(NCSE)。它表征了具有系列非线性微分方程和数据驱动参数的空气动力学非线性。所提出的框架可用于复杂的空气动力学重新插图,与流线型箱梁的强非线性相关。为了验证框架的精度和可行性,在流线型箱梁上进行的截面模型实验在主动湍流中进行,其中通过主动控制的振动翼来辅助可调节的多风扇阵列进行2D湍流条件。案例研究表明,即使在复杂的随机流动条件下,NCSE模型可用于预测时间和频率域中的非线性空气动力力。该方法提供了一种替代方法,可以基于具有足够精度的传入流动的条件来预测可能的空气动力学,并且可以说明空气动力的多频分量。

著录项

  • 来源
    《Wind & structures》 |2021年第1期|71-86|共16页
  • 作者单位

    Tongji Univ State Key Lab Disaster Reduct Civil Engn Shanghai 200092 Peoples R China|Tongji Univ Key Lab Transport Ind Wind Resistant Technol Brid Shanghai 200092 Peoples R China|Chongqing Jiaotong Univ State Key Lab Mt Bridge & Tunnel Engn Chongqing 400074 Peoples R China;

    Tongji Univ State Key Lab Disaster Reduct Civil Engn Shanghai 200092 Peoples R China;

    China Railway Siyuan Survey & Design Grp Co Ltd Wuhan 430063 Peoples R China;

    Tongji Univ State Key Lab Disaster Reduct Civil Engn Shanghai 200092 Peoples R China|Tongji Univ Key Lab Transport Ind Wind Resistant Technol Brid Shanghai 200092 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    aerodynamic force; nonlinear condensed subsystem equation; streamlined box girder; multifrequency effect; actively controlled turbulence;

    机译:空气动力;非线性凝聚子系统方程;流线型箱梁;多重效应;积极控制湍流;

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