Krenk Steen, Møller Randi N
Department of Mechanical Engineering, Technical University of Denmark, DK-2800 Kongens Lyngby, Denmark.
Rambøll, Hannemanns Alle, DK-2300 Copenhagen, Denmark.
Proc Math Phys Eng Sci. 2019 Mar;475(2223):20180887. doi: 10.1098/rspa.2018.0887. Epub 2019 Mar 27.
The covariance structure of a homogeneous isotropic turbulent wind velocity field is derived in terms of modified Bessel functions for an extended form of the Kàrmàn velocity spectrum, including explicit expressions for the transverse coherence functions. A concept of transformed isotropic turbulence is introduced to account for differences in the axial, transverse and vertical fluctuating wind velocities and length scales in natural wind. A special form of the auto-regressive simulation format is developed for convected turbulence with exponentially increasing intervals to the regression planes. In each step, the wind velocity field in a transverse plane is represented by a conditional mean field and a stochastic contribution determined explicitly by the time-space covariances. Simulation results are presented for a square area of dimension less than the integral length scale, representative of buildings and wind turbines, and a horizontal line of length six times the length scale, representative of a long-span bridge. The simulations demonstrate high accuracy of simulated spectral densities, covariance functions and transverse coherence functions. The simulated results do not show visible dependence on the specific points used for the simulated records. The efficiency and the free simulation point configuration suggest high competitiveness compared to fast Fourier transform-based spectral methods.
对于扩展形式的卡门速度谱,根据修正贝塞尔函数推导了均匀各向同性湍流风速场的协方差结构,包括横向相干函数的显式表达式。引入了变换各向同性湍流的概念,以考虑自然风中轴向、横向和垂直脉动风速及长度尺度的差异。针对对流湍流,开发了一种自回归模拟格式的特殊形式,其到回归平面的时间间隔呈指数增加。在每一步中,横向平面内的风速场由条件平均场和由时空协方差明确确定的随机贡献表示。给出了尺寸小于积分长度尺度的方形区域(代表建筑物和风力涡轮机)以及长度为长度尺度六倍的水平线(代表大跨度桥梁)的模拟结果。模拟结果表明,模拟的谱密度、协方差函数和横向相干函数具有很高的精度。模拟结果未显示出对用于模拟记录的特定点有明显依赖性。与基于快速傅里叶变换的谱方法相比,该方法的效率和自由模拟点配置显示出很高的竞争力。