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具有横向风波动的方柱体上涡激力的大涡模拟

Large-eddy simulation of vortex-excited force on a square cylinder with transverse wind fluctuations.

作者信息

Du Huanhuan, Fan Zikai, He Wei, Yang Zheguang

机构信息

Wenzhou Key Laboratory of Intelligent Lifeline Protection and Emergency Technology for Resilient City, College of Architecture and Energy Engineering, Wenzhou University of Technology, Wenzhou, 325035, China.

Hohai-Lille College, Hohai University, Nanjing, 210000, China.

出版信息

Sci Rep. 2023 Aug 30;13(1):14236. doi: 10.1038/s41598-023-41470-1.

Abstract

This study utilized 3D Large-eddy simulation to investigate the crosswind drag force on a square cylinder subjected to transverse wind fluctuation. Two distinct methods were employed to generate the fluctuation: a prescribed sine function at the inlet boundary and an upwind barrier. The frequency was normalized in the same Strouhal number form. The transverse wind fluctuation with a normalized frequency above 0.05 tends to excite the square cylinder transversely with the same frequency band. The frequency effect also exists on the square cylinder located downwind an obstacle half the square cylinder's size. However, an obstacle 2.5 times the size of the square cylinder generates a cross-wind fluctuation with the normalized frequency of 0.04, which cannot excite the square cylinder transversely. The frequency effect from the upwind barrier significantly dampens with the distance and disappears at 8-10 times the square cylinder size.

摘要

本研究利用三维大涡模拟来研究受横向风波动影响的方柱体上的侧风阻力。采用了两种不同的方法来产生波动:在入口边界处规定的正弦函数和上游障碍物。频率以相同的斯特劳哈尔数形式进行归一化。归一化频率高于0.05的横向风波动倾向于在相同频带内横向激发方柱体。频率效应也存在于位于尺寸为方柱体一半的障碍物下游的方柱体上。然而,尺寸为方柱体2.5倍的障碍物产生归一化频率为0.04的侧风波动,该波动无法横向激发方柱体。来自上游障碍物的频率效应随着距离显著衰减,并在方柱体尺寸的8 - 10倍处消失。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/758a/10469201/072f7e192c6a/41598_2023_41470_Fig1_HTML.jpg

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