首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Multi-scale simulation of time-varying wind fields for Hangzhou Jiubao Bridge during Typhoon Chan-hom
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Multi-scale simulation of time-varying wind fields for Hangzhou Jiubao Bridge during Typhoon Chan-hom

机译:杭州济博桥时代时变风田的多规模模拟台风陈磡

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This paper proposes a downscaled simulation framework aimed to resolve micro-scale wind velocity fields around a targeted site influenced by a typhoon. The framework is consisting of three procedures: (1) typhoon evolution reanalysis by the Advanced Hurricane Weather Research and Forecasting (AHW) model, (2) the large-eddy simulation (LES) coupled in the Weather Research and Forecasting (WRF) model (WRF-LES), and (3) stochastic generation of local turbulent flows. The framework incorporates high-resolution Geographic Information System (GIS) data to capture the effects of urbanization and complex local topography. The framework is applied to carry out multi-scale simulation of time-varying wind fields for Hangzhou Jiubao Bridge during Typhoon Chan-hom in 2015. The AHW model is able to resolve the three-dimensional wind velocity fields of Chan-hom, which provide the initial and lateral boundary conditions for further downscaled simulation over Hangzhou area. The kinematic simulation (KS) method due to its computational efficiency is employed to generate zero-mean turbulent wind velocities, which are then combined with the outputs of WRF-LES mode to reproduce full turbulent wind velocity fields for Jiubao Bridge. The simulation results of real application demonstrate the effectiveness and applicability of the framework, which provides a cross-scale simulation capability of reproducing typhoon wind fields.
机译:本文提出了较次要的仿真框架,旨在解决受台风影响的目标网站周围的微级风速场。该框架由三个程序组成:(1)台风进化再分析通过先进的飓风天气研究和预测(AHW)模型,(2)耦合在天气研究和预测(WRF)模型中的大涡模拟(LES)( WRF-les),(3)随机发电的局部湍流流动。该框架包含高分辨率地理信息系统(GIS)数据,以捕获城市化和复杂的本地地形的影响。该框架适用于2015年台风Chan-HOM期间为杭州九宝桥的时变风场进行多尺度模拟。AHW模型能够解决Chan-HOM的三维风速场,提供杭州地区进一步缩小仿真的初始边界条件。采用其计算效率引起的运动仿真(KS)方法产生零平均湍流风速,然后与WRF-LES模式的输出结合以再现九宝桥的完整湍流风速场。实际应用的仿真结果证明了框架的有效性和适用性,它提供了再现台风风极的跨尺度模拟能力。

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