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Digital simulation of 3D turbulence wind field of Sutong Bridge based on measured wind spectra

机译:基于测量风光光谱的Sutong Bridge 3D湍流风电场的数字仿真

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Time domain analysis is an essential implement to study the buffeting behavior of long-span bridges for it can consider the non-linear effect which is significant in long-span bridges. The prerequisite of time domain analysis is the accurate description of 3D turbulence winds. In this paper, some hypotheses for simplifying the 3D turbulence simulation of long-span cable-stayed bridges are conducted, considering the structural characteristics. The turbulence wind which is a 3D multivariate stochastic vector process is converted into four independent 1D univariate stochastic processes. Based on recorded wind data from structural health monitoring system (SHMS) of the Sutong Bridge, China, the measured spectra expressions are then presented using the nonlinear least-squares fitting method. Turbulence winds at the Sutong Bridge site are simulated based on the spectral representation method and the fast Fourier transform (FFT) technique, and the relevant results derived from target spectra including measured spectra and recommended spectra are compared. The reliability and accuracy of the presented turbulence simulation method are validated through comparisons between simulated and target spectra (measured and recommended spectra). The obtained turbulence simulations can not only serve further analysis of the buffeting behavior of the Sutong Bridge, but references for structural anti-wind design in adjacent regions.
机译:时域分析是研究长跨度桥的缓冲行为的基本工具,可以考虑在长跨度桥梁中显着的非线性效果。时间域分析的先决条件是3D湍流风的准确描述。在本文中,考虑到结构特性,进行了用于简化长跨度缆绳桥桥的3D湍流模拟的一些假设。作为3D多变量随机向量过程的湍流风转换成四个独立的1D单变量随机过程。基于来自中国凹槽桥的结构健康监测系统(SHMS)的记录风数据,然后使用非线性最小二乘拟合方法呈现测量的光谱表达式。基于光谱表示方法和快速傅里叶变换(FFT)技术模拟了Sutong桥网站的湍流风,并比较了包括测量光谱和推荐光谱的目标光谱的相关结果。通过模拟和目标光谱(测量和推荐光谱)之间的比较来验证所提出的湍流模拟方法的可靠性和准确性。所获得的湍流模拟不仅可以进一步分析Sutong桥的缓冲行为,而是在相邻地区的结构防风设计的参考。

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